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The 25th European Conference on Integrated Optics : Proceedings of ECIO 2024, June 17–19, Aachen, Germany / / edited by Jeremy Witzens, Joyce Poon, Lars Zimmermann, Wolfgang Freude
The 25th European Conference on Integrated Optics : Proceedings of ECIO 2024, June 17–19, Aachen, Germany / / edited by Jeremy Witzens, Joyce Poon, Lars Zimmermann, Wolfgang Freude
Autore Witzens Jeremy
Edizione [1st ed. 2024.]
Pubbl/distr/stampa Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2024
Descrizione fisica 1 online resource (598 pages)
Disciplina 621.3693
Collana Springer Proceedings in Physics Series
Soggetto topico Optics
Materials
Photonics
Quantum computers
Detectors
Electronic circuits
Optics and Photonics
Photonic Devices
Quantum Computing
Sensors and biosensors
Electronic Circuits and Systems
ISBN 9783031633782
9783031633775
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- Introduction to the Proceedings of ECIO 2024 -- Organization -- Contents -- Lasers and Amplifiers -- Widely Tunable External Cavity Laser Across the 1634-1777 nm Spectrum with Sub-kHz Linewidth -- 1 Introduction -- 2 Design and Simulation -- 3 Experimental Characterization -- 4 Conclusion -- References -- External Cavity 637-nm Laser with Increased RSOA-to-PIC Alignment Tolerance and a Filtered Sagnac-Loop Reflector with Single Output Waveguide -- 1 Introduction -- 2 Design -- 2.1 Silicon Nitride Platform -- 2.2 Components -- 3 Experimental Results -- 4 Conclusions -- References -- Widely Tunable GaSb/Si3N4 Vernier Hybrid Laser Emitting Around 2.55 µm -- 1 Introduction -- 2 Measurements -- References -- Pound-Drever-Hall Laser Frequency Stabilization of Tunable 1.55 µm Monolithically Integrated Semiconductor Lasers Using an Integrated Phase Modulator -- 1 Introduction -- 1.1 The Pound-Drever-Hall Stabilization System -- 2 Laser Frequency Stabilization Results -- 2.1 PDH Stabilization Using Integrated Laser and Integrated EOPM -- 2.2 PDH Stabilization Using Integrated Laser and EOPM Internal to Lasing Cavity -- 3 Comparison Between Methods of PDH Stabilization -- 4 Conclusion -- References -- High Power 1.8 W Tunable Laser Based on CMOS Compatible Power Amplifier -- 1 Introduction -- 2 Results -- References -- Micro-Transfer-Printed O-Band GaAs QD-On-Si Widely Tunable Laser -- 1 Introduction -- 2 Micro-transfer Printing -- 3 Design and Fabrication of the Tunable Laser -- 4 Characterization -- 5 Conclusion -- References -- Widely Tunable Laser on IMOS Platform -- 1 Introduction -- 2 Design -- 3 Experimental Setup and Search Algorithm -- 4 Results and Discussion -- 5 Conclusions -- References -- Ultrafast Tunable Photonic Integrated E-DBR Pockels Laser -- 1 Introduction -- 2 Measurements and Results -- References.
External Net Gain in Monolithically Integrated Si3N4-Al2O3:Er3+ Spiral Waveguide Amplifiers -- 1 Introduction -- 2 Experimental Details -- References -- Optoelectronic Devices -- III-V Electro-Absorption Modulation and Detection Devices Integrated to 220 nm Silicon-on-Insulator -- 1 Introduction -- 2 Device Design and Fabrication -- 3 Device Characteristics -- 4 Conclusion -- References -- Ge-fin Photodiodes with 3-dB Bandwidths Well Beyond 110 GHz for O-Band Receiver Subsystems -- 1 Introduction -- 2 Measurement Results and Discussion -- 3 Conclusion -- References -- Integrated-SiGe Waveguide Photodetector in the 5.2-10 µm Wavelength Range Operating at Room Temperature -- 1 Introduction -- 2 Design and Experimental Results -- 2.1 Design -- 2.2 Experimental Results -- 3 Conclusion -- References -- Assembly and Test -- Repeatability of Automated Edge Coupling for Wafer Level Testing -- 1 Introduction -- 2 System Overview -- 2.1 Probe Station Environment -- 2.2 Optical Probe -- 3 Automated Wafer-Level Testing with Edge Coupling -- 3.1 Device Under the Test -- 3.2 Experimental Results -- 4 Conclusions -- References -- Demonstration of Micro-transfer Printing Thick Optical Components on Glass and Silicon Wafers -- 1 Introduction -- 2 Fabrication of Coupons and Printing Process -- 3 Results and Discussion -- References -- Thin-Film Lithium Niobate -- Standardized TFLN Photonic Integrated Circuits Platform -- 1 Introduction -- 2 TFLN PIC Platform Technology Nodes -- 3 Outlook and Conclusion -- References -- Compact Silicon-Rich SiN/LiNbO3 Mach Zehnder and Microring Modulators -- 1 Introduction -- 2 Design and Fabrication -- 3 Experimental Results -- 4 Conclusion -- References -- Foundry Fabricated Thin-Film Lithium Niobate Electro-Optic Modulators for Blue Light -- 1 Introduction -- 2 Design and Characterization -- 3 Results -- 4 Conclusion -- References.
Polymer Photonics -- Efficient Modelling of 3D-Printed Freeform Waveguides by a Dedicated Beam-Propagation Method (BPM) Based on Transformation Optics -- 1 Introduction -- 2 Methods -- 3 Results and Discussions -- 4 Conclusions -- References -- Wavelength Tunable, Polymer-Based Arrayed Waveguide Gratings for Hybrid Integration -- 1 Introduction -- 2 Simulation and Design -- 2.1 Arrayed Waveguide Grating -- 2.2 Tunability -- 3 Characterization and Assembly -- 3.1 Design of MUX/DEMUX-PICs -- 3.2 Characterization and Assembly -- 4 Summary and Conclusion -- References -- Nonlinear Photonics -- Observation of Fundamental Charge Noise in Electro-Optic Photonic Integrated Circuits -- 1 Introduction -- 2 Fundamental Charge Refractive Noise via Pockels Effect -- 3 Charge Noise Limited Integrated Self-injection-locked Lasers -- 4 Discussion and Conclusion -- References -- An Integrated Gallium Phosphide Optical Parametric Amplifier -- 1 Continuous-Wave Parametric Amplification -- 2 Gallium Phosphide Spiral Waveguide -- 3 Optical Parametric Gain Measurements -- 4 Conclusion -- References -- Lithium Tantalate Photonic Integrated Circuits -- 1 Introduction -- 2 Results -- 3 Discussion -- References -- Voltage-Controllable Second-Order Susceptibility in Arsenic Sulfide Film -- 1 Introduction -- 2 Sample Preparation -- 3 Free-Space Measurements -- 3.1 EFISH Measurements -- 3.2 Bulk-SHG Measurements and (2)-Determination -- 3.3 Evaluation of EFISH Results -- 4 Conclusion -- References -- Second Harmonic Generation and (2) Cascading in Periodically Poled MgO:LiNbO3 Photonic Wires -- References -- Fiber Communication Systems -- Sustainable Pbps Co-packaged Optics Using Passively Assembled, Flip-Chip Evanescent Couplers -- 1 Introduction -- 2 Device Fabrication, Die Packaging, and Testing -- 3 Results -- 4 Discussion and Conclusion -- References.
Visible Photonics and Sensing -- Visible-Light Optical Phased Arrays with a Convex Grating Emitter on Implantable Neural Probes for Spatially Targeted Deep Brain Optogenetics -- 1 Introduction -- 2 Neural Probe Design and Fabrication -- 3 Characterization -- 4 Conclusion -- References -- Focusing Optical Phased Array for Optically Enabled Probing of the Retina with Subcellular Resolution -- 1 Introduction -- 2 Focusing One-Dimensional Optical Phased Array -- 2.1 Design -- 2.2 Simulation -- 2.3 Measurement and Optical Characterization -- 3 Thermo-Optical Phase Shifter for Beam Steering -- 4 Conclusion -- References -- Beyond the Free Spectral Range: On-Chip Spectrometer with Multi-color Cascaded Colloidal Quantum-Dot Photodiodes -- 1 Introduction -- 2 Principle -- 3 Experimental Results -- 4 Conclusion -- References -- Characterization of Grating Out-Couplers in the Ultraviolet-C Wavelength Range for On-Chip Spectroscopy -- 1 Introduction -- 2 Result -- 3 Conclusion -- References -- Microwave Photonics -- Simultaneous Notch Filtering and True Time Delay RF Photonic Front-End -- 1 Introduction -- 2 Chip Structure and Working Principle -- 3 Experimental Results -- 4 Conclusion -- References -- Large-Scale Photonic Chip Based Pulse Interleaver for Low-Noise Microwave Generation -- 1 Introduction -- 2 Device Design, Fabrication and Pulse Interleaving Demonstration -- 3 Summary -- References -- Agile Spectral Multiplication of Narrow-Band Comb using Integrated InP Multi-wavelength Laser -- 1 Introduction -- 2 Device Structure and Characterization -- 3 THz-Range Spectral Multiplication and Phase Locking of Narrow-Band EO-Comb -- 4 Conclusion -- References -- Microwave-Optical Transduction Using High-Overtone Bulk Acoustic Resonators on Silicon Nitride Photonics -- 1 Introduction -- 2 Design and Fabrication -- 3 Results -- References.
Phonon-Photon Interaction in Integrated Photonics -- Brillouin-Active Subwavelength Silicon Membrane Waveguides -- 1 Introduction -- 2 Design and Simulation -- 3 Experimental Results -- 4 Conclusions -- References -- Quantum Technologies -- High-Visibility Interference for Time Bin Encoded Entanglement on Silicon Integrated Platform -- 1 Introduction -- 2 System Design -- 3 Experiment Result -- 4 Conclusion -- References -- Industrial Ion Trap Chips with Integrated Optics -- 1 Introduction -- 2 Industrial Microfabrication of Ion Trap Chips -- 3 Optics Integration -- 3.1 Femtosecond Laser Written Waveguides in Borosilicate Glass -- 3.2 Thin Film Waveguides and Grating Couplers -- 4 Testing of Industrial Ion Traps with Integrated Optics -- 5 Outlook -- References -- Photonic Platform for Industrially Microfabricated Ion Traps -- 1 Introduction -- 2 Material and Fabrication Development -- 2.1 Thin Films -- 2.2 Structuring and Losses -- 3 Discussion and Outlook -- References -- Programmable Photonics -- Programmable Integrated Photonics with Phase-Change Materials -- 1 PCM Cells Embedded on Cladding -- 2 Monolithic PCM Integrated Photonics -- 3 Inverse-Design in Cladding-Embedded PCM Films -- 4 Direct-Laser-Written Waveguides in PCM Films -- 5 Combining Plasmonics with PCM-Based Integrated Photonics -- References -- Sb2Se3 Based Non-volatile Memory for Photonic Matrix-Vector Multiplications -- 1 Introduction -- 2 Device Fabrication -- 3 Results -- 3.1 Input Encoding -- 3.2 Switching Characterization -- 3.3 Measurements and Data Analysis -- 4 Conclusion -- References -- Reconfigurable Silicon Polarization Rotator in the O-Band Using Sb2Se3 on the Silicon-on-Insulator Platform -- 1 Introduction -- 2 Results -- 3 Discussion -- References -- A Photonic Convolution Processor Based on Matched Pair of Arrayed Waveguide Gratings -- 1 Introduction.
2 Device Design.
Record Nr. UNINA-9910865281403321
Witzens Jeremy  
Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2024
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Ab initio Theory of Magnetic Ordering [[electronic resource] ] : Electronic Origin of Pair- and Multi-Spin Interactions / / by Eduardo Mendive Tapia
Ab initio Theory of Magnetic Ordering [[electronic resource] ] : Electronic Origin of Pair- and Multi-Spin Interactions / / by Eduardo Mendive Tapia
Autore Mendive Tapia Eduardo
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (XVIII, 131 p. 35 illus., 34 illus. in color.)
Disciplina 621.34
Collana Springer Theses, Recognizing Outstanding Ph.D. Research
Soggetto topico Magnetism
Magnetic materials
Mathematical physics
Phase transitions (Statistical physics)
Quantum computers
Spintronics
Magnetism, Magnetic Materials
Theoretical, Mathematical and Computational Physics
Phase Transitions and Multiphase Systems
Quantum Information Technology, Spintronics
ISBN 3-030-37238-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Ab-initio Theory of Electronic Structure -- Disordered Local Moment Theory and Fast Electronic Responses -- Minimisation of the Gibbs Free Energy: Magnetic Phase Diagrams and Caloric Effects -- Pair- and Four- Spin Interactions in the Heavy Rare Earth Elements -- Frustrated Magnetism in Mn-based Antiperovskite Mn3GaN -- Summary and Outlook -- Appendix.
Record Nr. UNISA-996418436303316
Mendive Tapia Eduardo  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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Ab initio Theory of Magnetic Ordering : Electronic Origin of Pair- and Multi-Spin Interactions / / by Eduardo Mendive Tapia
Ab initio Theory of Magnetic Ordering : Electronic Origin of Pair- and Multi-Spin Interactions / / by Eduardo Mendive Tapia
Autore Mendive Tapia Eduardo
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (XVIII, 131 p. 35 illus., 34 illus. in color.)
Disciplina 621.34
Collana Springer Theses, Recognizing Outstanding Ph.D. Research
Soggetto topico Magnetism
Magnetic materials
Mathematical physics
Phase transitions (Statistical physics)
Quantum computers
Spintronics
Magnetism, Magnetic Materials
Theoretical, Mathematical and Computational Physics
Phase Transitions and Multiphase Systems
Quantum Information Technology, Spintronics
ISBN 3-030-37238-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Ab-initio Theory of Electronic Structure -- Disordered Local Moment Theory and Fast Electronic Responses -- Minimisation of the Gibbs Free Energy: Magnetic Phase Diagrams and Caloric Effects -- Pair- and Four- Spin Interactions in the Heavy Rare Earth Elements -- Frustrated Magnetism in Mn-based Antiperovskite Mn3GaN -- Summary and Outlook -- Appendix.
Record Nr. UNINA-9910373948503321
Mendive Tapia Eduardo  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
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AdS3/CFT2 and Holographic Entanglement Entropy / / by Jie-qiang Wu
AdS3/CFT2 and Holographic Entanglement Entropy / / by Jie-qiang Wu
Autore Wu Jie-qiang
Edizione [1st ed. 2019.]
Pubbl/distr/stampa Singapore : , : Springer Singapore : , : Imprint : Springer, , 2019
Descrizione fisica 1 online resource (x, 145 pages) : illustrations
Disciplina 539.725
Collana Springer Theses, Recognizing Outstanding Ph.D. Research
Soggetto topico Quantum field theory
String theory
Quantum computers
Spintronics
Quantum Field Theories, String Theory
Quantum Information Technology, Spintronics
ISBN 981-13-3212-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Background -- Holographic Entanglement Entropy in a Finite System at Finite Temperature -- One Loop Partition Function -- Holographic Entanglement Entropy in a General System -- Conformal Block and the Holographic Description -- Conclusion and Outlook.
Record Nr. UNINA-9910350221503321
Wu Jie-qiang  
Singapore : , : Springer Singapore : , : Imprint : Springer, , 2019
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Autore Imre Sandor
Pubbl/distr/stampa Hoboken, N.J., : Wiley, c2013
Descrizione fisica 1 online resource (484 p.)
Disciplina 621.382
621.38201
Altri autori (Persone) GyongyosiLaszlo
Soggetto topico Quantum communication
Quantum computers
ISBN 1-118-33745-X
1-283-86924-1
1-118-33743-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto PREFACE xvii -- CHAPTER 1 INTRODUCTION 1 -- 1.1 Emerging Quantum Infl uences 2 -- 1.2 Quantum Information Theory 2 -- 1.3 Different Capacities of Quantum Channels 3 -- 1.4 Challenges Related to Quantum Channel Capacities 5 -- 1.5 Secret and Private Quantum Communication 6 -- 1.6 Quantum Communications Networks 8 -- 1.7 Recent Developments and Future Directions 9 -- CHAPTER 2 INTRODUCTION TO QUANTUM INFORMATION THEORY 11 -- 2.1 Introduction 12 -- 2.2 Basic Definitions and Formulas 15 -- 2.3 Geometrical Interpretation of the Density Matrices 25 -- 2.4 Quantum Entanglement 31 -- 2.5 Entropy of Quantum States 34 -- 2.6 Measurement of the Amount of Entanglement 43 -- 2.7 Encoding Classical Information to Quantum States 49 -- 2.8 Quantum Noiseless Channel Coding 54 -- 2.9 Brief Summary 57 -- 2.10 Further Reading 57 -- CHAPTER 3 THE CLASSICAL CAPACITIES OF QUANTUM CHANNELS 65 -- 3.1 Introduction 65 -- 3.2 From Classical to Quantum Communication Channels 73 -- 3.3 Transmission of Classical Information over Quantum Channels 77 -- 3.4 The Holevo-Schumacher-Westmoreland Theorem 84 -- 3.5 Classical Communication over Quantum Channels 89 -- 3.6 Brief Summary of Classical Capacities 98 -- 3.7 Multilevel Quantum Systems and Qudit Channels 98 -- 3.8 The Zero-Error Capacity of a Quantum Channel 100 -- 3.9 Further Reading 117 -- CHAPTER 4 THE QUANTUM CAPACITY OF QUANTUM CHANNELS 126 -- 4.1 Introduction 126 -- 4.2 Transmission of Quantum Information 128 -- 4.3 Quantum Coherent Information 136 -- 4.4 The Asymptotic Quantum Capacity 146 -- 4.5 Relation between Classical and Quantum Capacities of Quantum Channels 149 -- 4.6 Further Reading 151 -- CHAPTER 5 GEOMETRIC INTERPRETATION OF QUANTUM CHANNELS 156 -- 5.1 Introduction 156 -- 5.2 Geometric Interpretation of the Quantum Channels 157 -- 5.3 Geometric Interpretation of the Quantum Informational Distance 162 -- 5.4 Computation of Smallest Quantum Ball to Derive the HSW Capacity 182 -- 5.5 Illustrative Example 190 -- 5.6 Geometry of Basic Quantum Channel Models 191.
5.7 Geometric Interpretation of HSW Capacities of Different Quantum Channel Models 197 -- 5.8 Further Reading 213 -- CHAPTER 6 ADDITIVITY OF QUANTUM CHANNEL CAPACITIES 218 -- 6.1 Introduction 218 -- 6.2 Additivity of Classical Capacity 223 -- 6.3 Additivity of Quantum Capacity 225 -- 6.4 Additivity of Holevo Information 232 -- 6.5 Geometric Interpretation of Additivity of HSW Capacity 245 -- 6.6 Classical and Quantum Capacities of some Channels 260 -- 6.7 The Classical Zero-Error Capacities of some Quantum Channels 264 -- 6.8 Further Reading 265 -- CHAPTER 7 SUPERACTIVATION OF QUANTUM CHANNELS 269 -- 7.1 Introduction 270 -- 7.2 The Non-Additivity of Private Information 270 -- 7.3 Channel Combination for Superadditivity of Private Information 274 -- 7.4 Superactivation of Quantum Capacity of Zero-Capacity Quantum Channels 282 -- 7.5 Behind Superactivation: The Information Theoretic Description 295 -- 7.6 Geometrical Interpretation of Quantum Capacity 302 -- 7.7 Example of Geometric Interpretation of Superactivation 305 -- 7.8 Extension of Superactivation for More General Classes 310 -- 7.9 Superactivation of Zero-Error Capacities 315 -- 7.10 Further Reading 322 -- CHAPTER 8 QUANTUM SECURITY AND PRIVACY 325 -- 8.1 Introduction 326 -- 8.2 Quantum Key Distribution 330 -- 8.3 Private Communication over the Quantum Channel 333 -- 8.4 Quantum Cryptographic Primitives 336 -- 8.5 Further Reading 354 -- CHAPTER 9 QUANTUM COMMUNICATION NETWORKS 362 -- 9.1 Long-Distance Quantum Communications 362 -- 9.2 Levels of Entanglement Swapping 368 -- 9.3 Scheduling Techniques of Purifi cation 371 -- 9.4 Hybrid Quantum Repeater 375 -- 9.5 Probabilistic Quantum Networks 382 -- 9.6 Conclusions 384 -- 9.7 Further Reading 384 -- CHAPTER 10 RECENT DEVELOPMENTS AND FUTURE DIRECTIONS 388 -- 10.1 Introduction 388 -- 10.2 Qubit Implementations 391 -- 10.3 Quantum CPUs 396 -- 10.4 Quantum Memories 400 -- 10.5 Further Reading 411 -- NOTATIONS AND ABBREVIATIONS 413 -- REFERENCES 420 -- INDEX 455.
Record Nr. UNINA-9910876864103321
Imre Sandor  
Hoboken, N.J., : Wiley, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Autore Imre Sâandor
Pubbl/distr/stampa Hoboken, New Jersey : , : Wiley, , c2012
Descrizione fisica 1 online resource (484 p.)
Disciplina 621.382
621.38201
Altri autori (Persone) GyongyosiLaszlo
Soggetto topico Quantum communication
Quantum computers
ISBN 1-118-33745-X
1-283-86924-1
1-118-33743-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto PREFACE xvii -- CHAPTER 1 INTRODUCTION 1 -- 1.1 Emerging Quantum Infl uences 2 -- 1.2 Quantum Information Theory 2 -- 1.3 Different Capacities of Quantum Channels 3 -- 1.4 Challenges Related to Quantum Channel Capacities 5 -- 1.5 Secret and Private Quantum Communication 6 -- 1.6 Quantum Communications Networks 8 -- 1.7 Recent Developments and Future Directions 9 -- CHAPTER 2 INTRODUCTION TO QUANTUM INFORMATION THEORY 11 -- 2.1 Introduction 12 -- 2.2 Basic Definitions and Formulas 15 -- 2.3 Geometrical Interpretation of the Density Matrices 25 -- 2.4 Quantum Entanglement 31 -- 2.5 Entropy of Quantum States 34 -- 2.6 Measurement of the Amount of Entanglement 43 -- 2.7 Encoding Classical Information to Quantum States 49 -- 2.8 Quantum Noiseless Channel Coding 54 -- 2.9 Brief Summary 57 -- 2.10 Further Reading 57 -- CHAPTER 3 THE CLASSICAL CAPACITIES OF QUANTUM CHANNELS 65 -- 3.1 Introduction 65 -- 3.2 From Classical to Quantum Communication Channels 73 -- 3.3 Transmission of Classical Information over Quantum Channels 77 -- 3.4 The Holevo-Schumacher-Westmoreland Theorem 84 -- 3.5 Classical Communication over Quantum Channels 89 -- 3.6 Brief Summary of Classical Capacities 98 -- 3.7 Multilevel Quantum Systems and Qudit Channels 98 -- 3.8 The Zero-Error Capacity of a Quantum Channel 100 -- 3.9 Further Reading 117 -- CHAPTER 4 THE QUANTUM CAPACITY OF QUANTUM CHANNELS 126 -- 4.1 Introduction 126 -- 4.2 Transmission of Quantum Information 128 -- 4.3 Quantum Coherent Information 136 -- 4.4 The Asymptotic Quantum Capacity 146 -- 4.5 Relation between Classical and Quantum Capacities of Quantum Channels 149 -- 4.6 Further Reading 151 -- CHAPTER 5 GEOMETRIC INTERPRETATION OF QUANTUM CHANNELS 156 -- 5.1 Introduction 156 -- 5.2 Geometric Interpretation of the Quantum Channels 157 -- 5.3 Geometric Interpretation of the Quantum Informational Distance 162 -- 5.4 Computation of Smallest Quantum Ball to Derive the HSW Capacity 182 -- 5.5 Illustrative Example 190 -- 5.6 Geometry of Basic Quantum Channel Models 191.
5.7 Geometric Interpretation of HSW Capacities of Different Quantum Channel Models 197 -- 5.8 Further Reading 213 -- CHAPTER 6 ADDITIVITY OF QUANTUM CHANNEL CAPACITIES 218 -- 6.1 Introduction 218 -- 6.2 Additivity of Classical Capacity 223 -- 6.3 Additivity of Quantum Capacity 225 -- 6.4 Additivity of Holevo Information 232 -- 6.5 Geometric Interpretation of Additivity of HSW Capacity 245 -- 6.6 Classical and Quantum Capacities of some Channels 260 -- 6.7 The Classical Zero-Error Capacities of some Quantum Channels 264 -- 6.8 Further Reading 265 -- CHAPTER 7 SUPERACTIVATION OF QUANTUM CHANNELS 269 -- 7.1 Introduction 270 -- 7.2 The Non-Additivity of Private Information 270 -- 7.3 Channel Combination for Superadditivity of Private Information 274 -- 7.4 Superactivation of Quantum Capacity of Zero-Capacity Quantum Channels 282 -- 7.5 Behind Superactivation: The Information Theoretic Description 295 -- 7.6 Geometrical Interpretation of Quantum Capacity 302 -- 7.7 Example of Geometric Interpretation of Superactivation 305 -- 7.8 Extension of Superactivation for More General Classes 310 -- 7.9 Superactivation of Zero-Error Capacities 315 -- 7.10 Further Reading 322 -- CHAPTER 8 QUANTUM SECURITY AND PRIVACY 325 -- 8.1 Introduction 326 -- 8.2 Quantum Key Distribution 330 -- 8.3 Private Communication over the Quantum Channel 333 -- 8.4 Quantum Cryptographic Primitives 336 -- 8.5 Further Reading 354 -- CHAPTER 9 QUANTUM COMMUNICATION NETWORKS 362 -- 9.1 Long-Distance Quantum Communications 362 -- 9.2 Levels of Entanglement Swapping 368 -- 9.3 Scheduling Techniques of Purifi cation 371 -- 9.4 Hybrid Quantum Repeater 375 -- 9.5 Probabilistic Quantum Networks 382 -- 9.6 Conclusions 384 -- 9.7 Further Reading 384 -- CHAPTER 10 RECENT DEVELOPMENTS AND FUTURE DIRECTIONS 388 -- 10.1 Introduction 388 -- 10.2 Qubit Implementations 391 -- 10.3 Quantum CPUs 396 -- 10.4 Quantum Memories 400 -- 10.5 Further Reading 411 -- NOTATIONS AND ABBREVIATIONS 413 -- REFERENCES 420 -- INDEX 455.
Record Nr. UNINA-9910141353303321
Imre Sâandor  
Hoboken, New Jersey : , : Wiley, , c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Advanced quantum communications : an engineering approach / / Sandor Imre, Laszlo Gyongyosi
Autore Imre Sâandor
Pubbl/distr/stampa Hoboken, New Jersey : , : Wiley, , c2012
Descrizione fisica 1 online resource (484 p.)
Disciplina 621.382
621.38201
Altri autori (Persone) GyongyosiLaszlo
Soggetto topico Quantum communication
Quantum computers
ISBN 1-118-33745-X
1-283-86924-1
1-118-33743-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto PREFACE xvii -- CHAPTER 1 INTRODUCTION 1 -- 1.1 Emerging Quantum Infl uences 2 -- 1.2 Quantum Information Theory 2 -- 1.3 Different Capacities of Quantum Channels 3 -- 1.4 Challenges Related to Quantum Channel Capacities 5 -- 1.5 Secret and Private Quantum Communication 6 -- 1.6 Quantum Communications Networks 8 -- 1.7 Recent Developments and Future Directions 9 -- CHAPTER 2 INTRODUCTION TO QUANTUM INFORMATION THEORY 11 -- 2.1 Introduction 12 -- 2.2 Basic Definitions and Formulas 15 -- 2.3 Geometrical Interpretation of the Density Matrices 25 -- 2.4 Quantum Entanglement 31 -- 2.5 Entropy of Quantum States 34 -- 2.6 Measurement of the Amount of Entanglement 43 -- 2.7 Encoding Classical Information to Quantum States 49 -- 2.8 Quantum Noiseless Channel Coding 54 -- 2.9 Brief Summary 57 -- 2.10 Further Reading 57 -- CHAPTER 3 THE CLASSICAL CAPACITIES OF QUANTUM CHANNELS 65 -- 3.1 Introduction 65 -- 3.2 From Classical to Quantum Communication Channels 73 -- 3.3 Transmission of Classical Information over Quantum Channels 77 -- 3.4 The Holevo-Schumacher-Westmoreland Theorem 84 -- 3.5 Classical Communication over Quantum Channels 89 -- 3.6 Brief Summary of Classical Capacities 98 -- 3.7 Multilevel Quantum Systems and Qudit Channels 98 -- 3.8 The Zero-Error Capacity of a Quantum Channel 100 -- 3.9 Further Reading 117 -- CHAPTER 4 THE QUANTUM CAPACITY OF QUANTUM CHANNELS 126 -- 4.1 Introduction 126 -- 4.2 Transmission of Quantum Information 128 -- 4.3 Quantum Coherent Information 136 -- 4.4 The Asymptotic Quantum Capacity 146 -- 4.5 Relation between Classical and Quantum Capacities of Quantum Channels 149 -- 4.6 Further Reading 151 -- CHAPTER 5 GEOMETRIC INTERPRETATION OF QUANTUM CHANNELS 156 -- 5.1 Introduction 156 -- 5.2 Geometric Interpretation of the Quantum Channels 157 -- 5.3 Geometric Interpretation of the Quantum Informational Distance 162 -- 5.4 Computation of Smallest Quantum Ball to Derive the HSW Capacity 182 -- 5.5 Illustrative Example 190 -- 5.6 Geometry of Basic Quantum Channel Models 191.
5.7 Geometric Interpretation of HSW Capacities of Different Quantum Channel Models 197 -- 5.8 Further Reading 213 -- CHAPTER 6 ADDITIVITY OF QUANTUM CHANNEL CAPACITIES 218 -- 6.1 Introduction 218 -- 6.2 Additivity of Classical Capacity 223 -- 6.3 Additivity of Quantum Capacity 225 -- 6.4 Additivity of Holevo Information 232 -- 6.5 Geometric Interpretation of Additivity of HSW Capacity 245 -- 6.6 Classical and Quantum Capacities of some Channels 260 -- 6.7 The Classical Zero-Error Capacities of some Quantum Channels 264 -- 6.8 Further Reading 265 -- CHAPTER 7 SUPERACTIVATION OF QUANTUM CHANNELS 269 -- 7.1 Introduction 270 -- 7.2 The Non-Additivity of Private Information 270 -- 7.3 Channel Combination for Superadditivity of Private Information 274 -- 7.4 Superactivation of Quantum Capacity of Zero-Capacity Quantum Channels 282 -- 7.5 Behind Superactivation: The Information Theoretic Description 295 -- 7.6 Geometrical Interpretation of Quantum Capacity 302 -- 7.7 Example of Geometric Interpretation of Superactivation 305 -- 7.8 Extension of Superactivation for More General Classes 310 -- 7.9 Superactivation of Zero-Error Capacities 315 -- 7.10 Further Reading 322 -- CHAPTER 8 QUANTUM SECURITY AND PRIVACY 325 -- 8.1 Introduction 326 -- 8.2 Quantum Key Distribution 330 -- 8.3 Private Communication over the Quantum Channel 333 -- 8.4 Quantum Cryptographic Primitives 336 -- 8.5 Further Reading 354 -- CHAPTER 9 QUANTUM COMMUNICATION NETWORKS 362 -- 9.1 Long-Distance Quantum Communications 362 -- 9.2 Levels of Entanglement Swapping 368 -- 9.3 Scheduling Techniques of Purifi cation 371 -- 9.4 Hybrid Quantum Repeater 375 -- 9.5 Probabilistic Quantum Networks 382 -- 9.6 Conclusions 384 -- 9.7 Further Reading 384 -- CHAPTER 10 RECENT DEVELOPMENTS AND FUTURE DIRECTIONS 388 -- 10.1 Introduction 388 -- 10.2 Qubit Implementations 391 -- 10.3 Quantum CPUs 396 -- 10.4 Quantum Memories 400 -- 10.5 Further Reading 411 -- NOTATIONS AND ABBREVIATIONS 413 -- REFERENCES 420 -- INDEX 455.
Record Nr. UNINA-9910830180103321
Imre Sâandor  
Hoboken, New Jersey : , : Wiley, , c2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Advancements in Complex Analysis [[electronic resource] ] : From Theory to Practice / / edited by Daniel Breaz, Michael Th. Rassias
Advancements in Complex Analysis [[electronic resource] ] : From Theory to Practice / / edited by Daniel Breaz, Michael Th. Rassias
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (VIII, 536 p. 9 illus., 2 illus. in color.)
Disciplina 515
Soggetto topico Functions of complex variables
System theory
Quantum computers
Difference equations
Functional equations
Several Complex Variables and Analytic Spaces
Complex Systems
Quantum Computing
Functions of a Complex Variable
Difference and Functional Equations
ISBN 3-030-40120-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto A Theory on Non-Constant Frequency Decompositions and Applications (Chen) -- One-component inner functions II (Cima) -- Biholomorphic Cryptosystems (Daras) -- Third order fermionic and fourth order bosonic operators (Ding) -- Holomorphic approximation: the legacy of Weierstrass, Runge, Oka-Weil, and Mergelyan (Fornæss) -- A Potapov-type approach to a truncated matricial Stieltjes-type power moment problem (Fritzsche) -- Formulas and inequalities for some special functions of a complex variable (Grinshpan) -- On the means of the non-trivial zeros of the Riemann zeta function (Hassani) -- Minimal kernels and compact analytic objects in complex surfaces(Mongodi) -- On the automorphic group of an entire function (Peretz) -- Integral representations in Complex Analysis: From classical results to recent developments (Range) -- On the Riemann zeta function and Gaussian multiplicative chaos (Saksman) -- Some new aspects in hypercomplex analysis (Sprößig) -- Some connections of complex dynamics (De Zotti).
Record Nr. UNISA-996418269403316
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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Advancements in Complex Analysis : From Theory to Practice / / edited by Daniel Breaz, Michael Th. Rassias
Advancements in Complex Analysis : From Theory to Practice / / edited by Daniel Breaz, Michael Th. Rassias
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (VIII, 536 p. 9 illus., 2 illus. in color.)
Disciplina 515
Soggetto topico Functions of complex variables
System theory
Quantum computers
Difference equations
Functional equations
Several Complex Variables and Analytic Spaces
Complex Systems
Quantum Computing
Functions of a Complex Variable
Difference and Functional Equations
ISBN 3-030-40120-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto A Theory on Non-Constant Frequency Decompositions and Applications (Chen) -- One-component inner functions II (Cima) -- Biholomorphic Cryptosystems (Daras) -- Third order fermionic and fourth order bosonic operators (Ding) -- Holomorphic approximation: the legacy of Weierstrass, Runge, Oka-Weil, and Mergelyan (Fornæss) -- A Potapov-type approach to a truncated matricial Stieltjes-type power moment problem (Fritzsche) -- Formulas and inequalities for some special functions of a complex variable (Grinshpan) -- On the means of the non-trivial zeros of the Riemann zeta function (Hassani) -- Minimal kernels and compact analytic objects in complex surfaces(Mongodi) -- On the automorphic group of an entire function (Peretz) -- Integral representations in Complex Analysis: From classical results to recent developments (Range) -- On the Riemann zeta function and Gaussian multiplicative chaos (Saksman) -- Some new aspects in hypercomplex analysis (Sprößig) -- Some connections of complex dynamics (De Zotti).
Record Nr. UNINA-9910483859903321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Advances in Dynamics, Optimization and Computation : A volume dedicated to Michael Dellnitz on the occasion of his 60th birthday / / edited by Oliver Junge, Oliver Schütze, Gary Froyland, Sina Ober-Blöbaum, Kathrin Padberg-Gehle
Advances in Dynamics, Optimization and Computation : A volume dedicated to Michael Dellnitz on the occasion of his 60th birthday / / edited by Oliver Junge, Oliver Schütze, Gary Froyland, Sina Ober-Blöbaum, Kathrin Padberg-Gehle
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (XV, 392 p. 177 illus., 107 illus. in color.)
Disciplina 531.11
Collana Studies in Systems, Decision and Control
Soggetto topico Engineering mathematics
Automatic control
Computers
Quantum computers
System theory
Engineering Mathematics
Control and Systems Theory
Theory of Computation
Quantum Computing
Complex Systems
ISBN 3-030-51264-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto A continuation approach to computing phase resetting curves -- Input-output networks, singularity theory, and homeostasis -- The approximation of invariant sets in infinite dimensional dynamical systems -- Set-oriented and finite-element study of coherent behavior in Rayleigh-Benard convection -- Singular value decomposition of operators on Reproducing Kernel Hilbert Spaces -- A weak characterization of slow variables in stochastic dynamical systems -- Analysis and simulation of extremes and rare events in complex systems -- Dynamical systems theory and algorithms for NP-hard problems.
Record Nr. UNINA-9910411933203321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
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