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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. di Salerno | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. di Salerno | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|
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 | ||
![]() | ||
Lo trovi qui: Univ. Federico II | ||
|