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Astroparticle, particle and space physics, detectors and medical physics applications [[electronic resource] ] : proceedings of the 9th Conference : Villa Olmo, Como, Italy, 17-21 October 2005 / / editors, Michele Barone ... [et al.]
Astroparticle, particle and space physics, detectors and medical physics applications [[electronic resource] ] : proceedings of the 9th Conference : Villa Olmo, Como, Italy, 17-21 October 2005 / / editors, Michele Barone ... [et al.]
Pubbl/distr/stampa Hackensack, N.J., : World Scientific, c2006
Descrizione fisica 1 online resource (1162 p.)
Disciplina 539.7
Altri autori (Persone) BaroneMichele
Collana Astroparticle, Particle, Space Physics, Radiation Interaction, Detectors and Medical Physics Applica
Soggetto topico Nuclear astrophysics
Particles (Nuclear physics)
Particle acceleration
Nuclear counters
Nuclear physics - Instruments
Medical physics - Instruments
Soggetto non controllato Astroparticle
Space physics
ISBN 1-281-92490-3
9786611924904
981-277-367-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto CONTENTS ; Preface ; Advanced Miniaturized Detectors and Particle Identification ; A Novel Micromegas Detector for In-core Nuclear Reactor Neutron Flux Measurements ; The ALICE TPC ; The ATLAS RPC Test Stands
Performances in High Magnetic Fields of Fine-mesh Photomultipliers for Fast Time-of-flight Detectors Recent Results on GridPix Detectors: An Integrated Micromegas Grid and a Micromegas Ageing Test ; RICH Detector at Jefferson Lab Design Performance and Physics Results
Hybrid-Photon-Detectors in the LHCb RICH System Development of a Fast Transition Radiation and Tracking Detector for CBM at FAIR ; R&D on a Detector for Very High Momentum Charged Hadron Identification in ALICE ; The Design and Test of the ATLAS Diamond Beam Conditions Monitor
The AMS02 Transition Radiation Detector (TRD) - A Gasfilled Detector for the International Space Station A New Automatic Microscope for High Speed Analysis of Nuclear Emulsions ; A Novel Type of Proximity Focusing RICH Counter with Multiple Refractive Index Aerogel Radiator
A Subminiature Scintillation Detector for Catheter Operation Analysis of Test-beam Data from a Prototype LHCb RICH Detector ; Single Crystal CVD Diamond Detectors for Hadron Physics ; Improvement of Particle Identification by Energy Loss in a Stack of Silicon Detectors
Studies for a Fast RICH
Record Nr. UNINA-9910778371703321
Hackensack, N.J., : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Astroparticle, particle and space physics, detectors and medical physics applications [[electronic resource] ] : proceedings of the 9th Conference : Villa Olmo, Como, Italy, 17-21 October 2005 / / editors, Michele Barone ... [et al.]
Astroparticle, particle and space physics, detectors and medical physics applications [[electronic resource] ] : proceedings of the 9th Conference : Villa Olmo, Como, Italy, 17-21 October 2005 / / editors, Michele Barone ... [et al.]
Edizione [1st ed.]
Pubbl/distr/stampa Hackensack, N.J., : World Scientific, c2006
Descrizione fisica 1 online resource (1162 p.)
Disciplina 539.7
Altri autori (Persone) BaroneMichele
Collana Astroparticle, Particle, Space Physics, Radiation Interaction, Detectors and Medical Physics Applica
Soggetto topico Nuclear astrophysics
Particles (Nuclear physics)
Particle acceleration
Nuclear counters
Nuclear physics - Instruments
Medical physics - Instruments
Soggetto non controllato Astroparticle
Space physics
ISBN 1-281-92490-3
9786611924904
981-277-367-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto CONTENTS ; Preface ; Advanced Miniaturized Detectors and Particle Identification ; A Novel Micromegas Detector for In-core Nuclear Reactor Neutron Flux Measurements ; The ALICE TPC ; The ATLAS RPC Test Stands
Performances in High Magnetic Fields of Fine-mesh Photomultipliers for Fast Time-of-flight Detectors Recent Results on GridPix Detectors: An Integrated Micromegas Grid and a Micromegas Ageing Test ; RICH Detector at Jefferson Lab Design Performance and Physics Results
Hybrid-Photon-Detectors in the LHCb RICH System Development of a Fast Transition Radiation and Tracking Detector for CBM at FAIR ; R&D on a Detector for Very High Momentum Charged Hadron Identification in ALICE ; The Design and Test of the ATLAS Diamond Beam Conditions Monitor
The AMS02 Transition Radiation Detector (TRD) - A Gasfilled Detector for the International Space Station A New Automatic Microscope for High Speed Analysis of Nuclear Emulsions ; A Novel Type of Proximity Focusing RICH Counter with Multiple Refractive Index Aerogel Radiator
A Subminiature Scintillation Detector for Catheter Operation Analysis of Test-beam Data from a Prototype LHCb RICH Detector ; Single Crystal CVD Diamond Detectors for Hadron Physics ; Improvement of Particle Identification by Energy Loss in a Stack of Silicon Detectors
Studies for a Fast RICH
Record Nr. UNINA-9910828022103321
Hackensack, N.J., : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Autore Marchetti Domingos H. U (Domingos Humberto Urbano)
Pubbl/distr/stampa Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Descrizione fisica 1 online resource (362 p.)
Disciplina 539
539.7
Altri autori (Persone) WreszinskiWalter F. <1946->
Soggetto topico Asymptotic symmetry (Physics)
Symmetry (Physics)
Quantum field theory
Soggetto genere / forma Electronic books.
ISBN 1-283-90002-5
981-4383-81-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface: A Description of Contents; Acknowledgments; Contents; 1. Introduction: A Summary of Mathematical and Physical Background for One-Particle Quantum Mechanics; 2. Spreading and Asymptotic Decay of Free Wave Packets: The Method of Stationary Phase and van der Corput's Approach; 3. The Relation Between Time-Like Decay and Spectral Properties; 3.1 Decay on the Average Sense; 3.1.1 Preliminaries: Wiener's, RAGE and Weyl theorems; 3.1.2 Models of exotic spectra, quantum KAM theorems and Howland's theorem
3.1.3 UαH measures and decay on the average: Strichartz-Last theorem and Guarneri-Last-Combes theorem3.2 Decay in the Lp-Sense; 3.2.1 Relation between decay in the Lp-sense and decay on the average sense; 3.2.2 Decay on the Lp-sense and absolute continuity; 3.2.3 Sojourn time, Sinha's theorem and time-energy uncertainty relation; 3.3 PointwiseDecay; 3.3.1 Does decay in the Lp-sense and/or absolute continuity imply pointwise decay?; 3.3.2 Rajchman measures, and the connection between ergodic theory, number theory and analysis; 3.3.3 Fourier dimension, Salem sets and Salem's method
3.4 Quantum Dynamical Stability4. Time Decay for a Class of Models with Sparse Potentials; 4.1 Spectral Transition for Sparse Models in d = 1; 4.1.1 Existence of "mobility edges"; 4.1.2 Uniform distribution of Prufer angles; 4.1.3 Proof of Theorem 4.1; 4.2 Decay in the Average; 4.2.1 Anderson-like transition for "separable" sparse models in d = 2; 4.2.2 Uniform α-Holder continuity of spectral measures; 4.2.3 Formulation, proof and comments of the main result; 4.3 PointwiseDecay; 4.3.1 Pearson's fractal measures: Borderline time-decay for the least sparsemodel; 4.3.2 Gevrey-type estimates
4.3.3 Proof of Theorem4.75. Resonances and Quasi-exponential Decay; 5.1 Introduction; 5.2 The Model System; 5.3 Generalities on Laplace-Borel Transform and Asymptotic Expansions; 5.4 Decay for a Class of Model Systems After Costin and Huang: Gamow Vectors and Dispersive Part; 5.5 The Role of Gamow Vectors; 5.6 A First Example of Quantum Instability: Ionization; 5.7 Ionization: Study of a Simple Model; 5.8 A Second Example of Multiphoton Ionization: The Work of M. Huang; 5.9 The Reason for Enhanced Stability at Resonances: Connection with the Fermi Golden Rule
6. Aspects of the Connection Between Quantum Mechanics and Classical Mechanics: Quantum Systems with Infinite Number of Degrees of Freedom6.1 Introduction; 6.2 Exponential Decay and Quantum Anosov Systems; 6.2.1 Generalities: Exponential decay in quantum and classical systems; 6.2.2 QuantumAnosov systems; 6.2.3 Examples of quantum Anosov systems and Weigert's configurational quantum cat map; 6.3 Approach to Equilibrium; 6.3.1 A brief introductory motivation; 6.3.2 Approach to equilibrium in classical (statistical) mechanics 1: Ergodicity, mixing and the Anosov property. The Gibbs entropy
6.3.3 Approach to equilibrium in classical mechanics 2
Record Nr. UNINA-9910463663003321
Marchetti Domingos H. U (Domingos Humberto Urbano)  
Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Autore Marchetti Domingos H. U (Domingos Humberto Urbano)
Pubbl/distr/stampa Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Descrizione fisica 1 online resource (362 p.)
Disciplina 539
539.7
Altri autori (Persone) WreszinskiWalter F. <1946->
Soggetto topico Asymptotic symmetry (Physics)
Symmetry (Physics)
Quantum field theory
ISBN 1-283-90002-5
981-4383-81-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface: A Description of Contents; Acknowledgments; Contents; 1. Introduction: A Summary of Mathematical and Physical Background for One-Particle Quantum Mechanics; 2. Spreading and Asymptotic Decay of Free Wave Packets: The Method of Stationary Phase and van der Corput's Approach; 3. The Relation Between Time-Like Decay and Spectral Properties; 3.1 Decay on the Average Sense; 3.1.1 Preliminaries: Wiener's, RAGE and Weyl theorems; 3.1.2 Models of exotic spectra, quantum KAM theorems and Howland's theorem
3.1.3 UαH measures and decay on the average: Strichartz-Last theorem and Guarneri-Last-Combes theorem3.2 Decay in the Lp-Sense; 3.2.1 Relation between decay in the Lp-sense and decay on the average sense; 3.2.2 Decay on the Lp-sense and absolute continuity; 3.2.3 Sojourn time, Sinha's theorem and time-energy uncertainty relation; 3.3 PointwiseDecay; 3.3.1 Does decay in the Lp-sense and/or absolute continuity imply pointwise decay?; 3.3.2 Rajchman measures, and the connection between ergodic theory, number theory and analysis; 3.3.3 Fourier dimension, Salem sets and Salem's method
3.4 Quantum Dynamical Stability4. Time Decay for a Class of Models with Sparse Potentials; 4.1 Spectral Transition for Sparse Models in d = 1; 4.1.1 Existence of "mobility edges"; 4.1.2 Uniform distribution of Prufer angles; 4.1.3 Proof of Theorem 4.1; 4.2 Decay in the Average; 4.2.1 Anderson-like transition for "separable" sparse models in d = 2; 4.2.2 Uniform α-Holder continuity of spectral measures; 4.2.3 Formulation, proof and comments of the main result; 4.3 PointwiseDecay; 4.3.1 Pearson's fractal measures: Borderline time-decay for the least sparsemodel; 4.3.2 Gevrey-type estimates
4.3.3 Proof of Theorem4.75. Resonances and Quasi-exponential Decay; 5.1 Introduction; 5.2 The Model System; 5.3 Generalities on Laplace-Borel Transform and Asymptotic Expansions; 5.4 Decay for a Class of Model Systems After Costin and Huang: Gamow Vectors and Dispersive Part; 5.5 The Role of Gamow Vectors; 5.6 A First Example of Quantum Instability: Ionization; 5.7 Ionization: Study of a Simple Model; 5.8 A Second Example of Multiphoton Ionization: The Work of M. Huang; 5.9 The Reason for Enhanced Stability at Resonances: Connection with the Fermi Golden Rule
6. Aspects of the Connection Between Quantum Mechanics and Classical Mechanics: Quantum Systems with Infinite Number of Degrees of Freedom6.1 Introduction; 6.2 Exponential Decay and Quantum Anosov Systems; 6.2.1 Generalities: Exponential decay in quantum and classical systems; 6.2.2 QuantumAnosov systems; 6.2.3 Examples of quantum Anosov systems and Weigert's configurational quantum cat map; 6.3 Approach to Equilibrium; 6.3.1 A brief introductory motivation; 6.3.2 Approach to equilibrium in classical (statistical) mechanics 1: Ergodicity, mixing and the Anosov property. The Gibbs entropy
6.3.3 Approach to equilibrium in classical mechanics 2
Record Nr. UNINA-9910788622803321
Marchetti Domingos H. U (Domingos Humberto Urbano)  
Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Asymptotic time decay in quantum physics [[electronic resource] /] / Domingos H.U. Marchetti, Walter F. Wreszinski
Autore Marchetti Domingos H. U (Domingos Humberto Urbano)
Pubbl/distr/stampa Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Descrizione fisica 1 online resource (362 p.)
Disciplina 539
539.7
Altri autori (Persone) WreszinskiWalter F. <1946->
Soggetto topico Asymptotic symmetry (Physics)
Symmetry (Physics)
Quantum field theory
ISBN 1-283-90002-5
981-4383-81-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface: A Description of Contents; Acknowledgments; Contents; 1. Introduction: A Summary of Mathematical and Physical Background for One-Particle Quantum Mechanics; 2. Spreading and Asymptotic Decay of Free Wave Packets: The Method of Stationary Phase and van der Corput's Approach; 3. The Relation Between Time-Like Decay and Spectral Properties; 3.1 Decay on the Average Sense; 3.1.1 Preliminaries: Wiener's, RAGE and Weyl theorems; 3.1.2 Models of exotic spectra, quantum KAM theorems and Howland's theorem
3.1.3 UαH measures and decay on the average: Strichartz-Last theorem and Guarneri-Last-Combes theorem3.2 Decay in the Lp-Sense; 3.2.1 Relation between decay in the Lp-sense and decay on the average sense; 3.2.2 Decay on the Lp-sense and absolute continuity; 3.2.3 Sojourn time, Sinha's theorem and time-energy uncertainty relation; 3.3 PointwiseDecay; 3.3.1 Does decay in the Lp-sense and/or absolute continuity imply pointwise decay?; 3.3.2 Rajchman measures, and the connection between ergodic theory, number theory and analysis; 3.3.3 Fourier dimension, Salem sets and Salem's method
3.4 Quantum Dynamical Stability4. Time Decay for a Class of Models with Sparse Potentials; 4.1 Spectral Transition for Sparse Models in d = 1; 4.1.1 Existence of "mobility edges"; 4.1.2 Uniform distribution of Prufer angles; 4.1.3 Proof of Theorem 4.1; 4.2 Decay in the Average; 4.2.1 Anderson-like transition for "separable" sparse models in d = 2; 4.2.2 Uniform α-Holder continuity of spectral measures; 4.2.3 Formulation, proof and comments of the main result; 4.3 PointwiseDecay; 4.3.1 Pearson's fractal measures: Borderline time-decay for the least sparsemodel; 4.3.2 Gevrey-type estimates
4.3.3 Proof of Theorem4.75. Resonances and Quasi-exponential Decay; 5.1 Introduction; 5.2 The Model System; 5.3 Generalities on Laplace-Borel Transform and Asymptotic Expansions; 5.4 Decay for a Class of Model Systems After Costin and Huang: Gamow Vectors and Dispersive Part; 5.5 The Role of Gamow Vectors; 5.6 A First Example of Quantum Instability: Ionization; 5.7 Ionization: Study of a Simple Model; 5.8 A Second Example of Multiphoton Ionization: The Work of M. Huang; 5.9 The Reason for Enhanced Stability at Resonances: Connection with the Fermi Golden Rule
6. Aspects of the Connection Between Quantum Mechanics and Classical Mechanics: Quantum Systems with Infinite Number of Degrees of Freedom6.1 Introduction; 6.2 Exponential Decay and Quantum Anosov Systems; 6.2.1 Generalities: Exponential decay in quantum and classical systems; 6.2.2 QuantumAnosov systems; 6.2.3 Examples of quantum Anosov systems and Weigert's configurational quantum cat map; 6.3 Approach to Equilibrium; 6.3.1 A brief introductory motivation; 6.3.2 Approach to equilibrium in classical (statistical) mechanics 1: Ergodicity, mixing and the Anosov property. The Gibbs entropy
6.3.3 Approach to equilibrium in classical mechanics 2
Record Nr. UNINA-9910827560003321
Marchetti Domingos H. U (Domingos Humberto Urbano)  
Singapore ; ; Hackensack, NJ, : World Scientific, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Atombau und Spektrallinien / Arnold Sommerfeld
Atombau und Spektrallinien / Arnold Sommerfeld
Autore Sommerfeld, Arnold
Pubbl/distr/stampa Braunschweig : Vieweg & Sohn, 1919
Descrizione fisica 550 p. : ill. ; 22 cm
Disciplina 539.7
Soggetto non controllato Atomo
Analisi dello spettro
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-990000476590403321
Sommerfeld, Arnold
Braunschweig : Vieweg & Sohn, 1919
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Atome 1.
Atome 1.
Pubbl/distr/stampa Berlin : Springer-Verlag, 1957
Descrizione fisica 454 p. : ill. ; 25 cm
Disciplina 539.7
Soggetto non controllato Atomo
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-990008201850403321
Berlin : Springer-Verlag, 1957
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Atome 2.
Atome 2.
Pubbl/distr/stampa Berlin : Springer-Verlag, 1956
Descrizione fisica VI, 424 p. : ill. ; 25 cm
Disciplina 539.7
Soggetto non controllato Atomo
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-990008201860403321
Berlin : Springer-Verlag, 1956
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Atome 3., moleküle 2.
Atome 3., moleküle 2.
Pubbl/distr/stampa Berlin : Springer-Verlag, 1959
Descrizione fisica VI, 439 p. : ill. ; 25 cm
Disciplina 539.7
Soggetto non controllato Atomo
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-990008201880403321
Berlin : Springer-Verlag, 1959
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Atomenergie / Paul Scherrer
Atomenergie / Paul Scherrer
Autore Scherrer, Paul
Pubbl/distr/stampa Zurich : Kommissionverlag Gebr. Fretz AG., 1957
Descrizione fisica 42 p. ; 23 cm
Disciplina 539.7
Soggetto non controllato Fisica atomica
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-990001762680403321
Scherrer, Paul  
Zurich : Kommissionverlag Gebr. Fretz AG., 1957
Materiale a stampa
Lo trovi qui: Univ. Federico II
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