Strong light-matter coupling: from atoms to solid-state systems
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Weitere Verfasser: | , , , , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New Jersey
World Scientific
[2014]
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Schlagworte: | |
Online-Zugang: | FAW01 FAW02 Volltext |
Beschreibung: | Print version record |
Beschreibung: | 1 online resource |
ISBN: | 9789814460347 9789814460354 9814460346 9814460354 |
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505 | 8 | |a Cavity QED in atomic physics / Serge Haroche and Jean-Michel Raimond -- Exciton-polaritons in bulk semiconductors and in confined electron and photon systems / Lucio Claudio Andreani -- Experimental circuit QED / Patrice Bertet -- Quantum open systems / H.J. Carmichael -- Basic concepts in quantum information / Steven M. Girvin -- Cavity polaritons : crossroad between non-linear optics and atomic condensates / Alberto Amo and Jacqueline Bloch -- Quantum plasmonics / Darrick Chang -- Quantum polaritonics / S. Portolan, O. Di Stefano and S. Savasta -- Optical signal processing with enhanced nonlinearity in photonic crystals / A. De Rossi and S. Combrí | |
505 | 8 | |a The physics of strong light-matter coupling has been addressed in different scientific communities over the last three decades. Since the early eighties, atoms coupled to optical and microwave cavities have led to pioneering demonstrations of cavity quantum electrodynamics, Gedanken experiments, and building blocks for quantum information processing, for which the Nobel Prize in Physics was awarded in 2012. In the framework of semiconducting devices, strong coupling has allowed investigations into the physics of Bose gases in solid-state environments, and the latter holds promise for exploiting light-matter interaction at the single-photon level in scalable architectures. More recently, impressive developments in the so-called superconducting circuit QED have opened another fundamental playground to revisit cavity quantum electrodynamics for practical and fundamental purposes. This book aims at developing the necessary interface between these communities, by providing future researchers with a robust conceptual, theoretical and experimental basis on strong light-matter coupling, both in the classical and in the quantum regimes. In addition, the emphasis is on new forefront research topics currently developed around the physics of strong light-matter interaction in the atomic and solid-state scenarios | |
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author2 | Auffèves, Alexia Gerace, Dario Richard, Maxime 1977- Portolan, Stefano Santos, Marcelo de França Kwek, Leong Chuan |
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contents | Cavity QED in atomic physics / Serge Haroche and Jean-Michel Raimond -- Exciton-polaritons in bulk semiconductors and in confined electron and photon systems / Lucio Claudio Andreani -- Experimental circuit QED / Patrice Bertet -- Quantum open systems / H.J. Carmichael -- Basic concepts in quantum information / Steven M. Girvin -- Cavity polaritons : crossroad between non-linear optics and atomic condensates / Alberto Amo and Jacqueline Bloch -- Quantum plasmonics / Darrick Chang -- Quantum polaritonics / S. Portolan, O. Di Stefano and S. Savasta -- Optical signal processing with enhanced nonlinearity in photonic crystals / A. De Rossi and S. Combrí The physics of strong light-matter coupling has been addressed in different scientific communities over the last three decades. Since the early eighties, atoms coupled to optical and microwave cavities have led to pioneering demonstrations of cavity quantum electrodynamics, Gedanken experiments, and building blocks for quantum information processing, for which the Nobel Prize in Physics was awarded in 2012. In the framework of semiconducting devices, strong coupling has allowed investigations into the physics of Bose gases in solid-state environments, and the latter holds promise for exploiting light-matter interaction at the single-photon level in scalable architectures. More recently, impressive developments in the so-called superconducting circuit QED have opened another fundamental playground to revisit cavity quantum electrodynamics for practical and fundamental purposes. This book aims at developing the necessary interface between these communities, by providing future researchers with a robust conceptual, theoretical and experimental basis on strong light-matter coupling, both in the classical and in the quantum regimes. In addition, the emphasis is on new forefront research topics currently developed around the physics of strong light-matter interaction in the atomic and solid-state scenarios |
ctrlnum | (OCoLC)869281774 (DE-599)BVBBV043038705 |
dewey-full | 535/.15 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 535 - Light and related radiation |
dewey-raw | 535/.15 |
dewey-search | 535/.15 |
dewey-sort | 3535 215 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Electronic eBook |
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language | English |
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spelling | Strong light-matter coupling from atoms to solid-state systems edited by Alexia Auffèves (Institut Néel-CNRS, France), Dario Gerace (Università di Pavia, Italy), Maxime Richard (Institut Néel-CNRS, France), Stefano Portolan (Institut Néel-CNRS, France), Marcelo de França Santos (Universidade Federal de Minas Gerais, Brazil), Leong Chuan Kwek (National University of Singapore, Singapore) & Christian Miniatura (National University of Singapore, Singapore) New Jersey World Scientific [2014] © 2014 1 online resource txt rdacontent c rdamedia cr rdacarrier Print version record Cavity QED in atomic physics / Serge Haroche and Jean-Michel Raimond -- Exciton-polaritons in bulk semiconductors and in confined electron and photon systems / Lucio Claudio Andreani -- Experimental circuit QED / Patrice Bertet -- Quantum open systems / H.J. Carmichael -- Basic concepts in quantum information / Steven M. Girvin -- Cavity polaritons : crossroad between non-linear optics and atomic condensates / Alberto Amo and Jacqueline Bloch -- Quantum plasmonics / Darrick Chang -- Quantum polaritonics / S. Portolan, O. Di Stefano and S. Savasta -- Optical signal processing with enhanced nonlinearity in photonic crystals / A. De Rossi and S. Combrí The physics of strong light-matter coupling has been addressed in different scientific communities over the last three decades. Since the early eighties, atoms coupled to optical and microwave cavities have led to pioneering demonstrations of cavity quantum electrodynamics, Gedanken experiments, and building blocks for quantum information processing, for which the Nobel Prize in Physics was awarded in 2012. In the framework of semiconducting devices, strong coupling has allowed investigations into the physics of Bose gases in solid-state environments, and the latter holds promise for exploiting light-matter interaction at the single-photon level in scalable architectures. More recently, impressive developments in the so-called superconducting circuit QED have opened another fundamental playground to revisit cavity quantum electrodynamics for practical and fundamental purposes. This book aims at developing the necessary interface between these communities, by providing future researchers with a robust conceptual, theoretical and experimental basis on strong light-matter coupling, both in the classical and in the quantum regimes. In addition, the emphasis is on new forefront research topics currently developed around the physics of strong light-matter interaction in the atomic and solid-state scenarios SCIENCE / Physics / Optics & Light bisacsh Quantum electrodynamics fast Quantum optics fast Quantum optics Quantum electrodynamics Quantenoptik (DE-588)4047990-0 gnd rswk-swf Quantenelektrodynamik (DE-588)4047982-1 gnd rswk-swf Quantenoptik (DE-588)4047990-0 s Quantenelektrodynamik (DE-588)4047982-1 s 1\p DE-604 Auffèves, Alexia edt Gerace, Dario edt Richard, Maxime 1977- edt Portolan, Stefano edt Santos, Marcelo de França edt Kwek, Leong Chuan edt Miniatura, C. Sonstige oth Erscheint auch als Druck-Ausgabe Strong light-matter coupling http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=689760 Aggregator Volltext 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Strong light-matter coupling from atoms to solid-state systems Cavity QED in atomic physics / Serge Haroche and Jean-Michel Raimond -- Exciton-polaritons in bulk semiconductors and in confined electron and photon systems / Lucio Claudio Andreani -- Experimental circuit QED / Patrice Bertet -- Quantum open systems / H.J. Carmichael -- Basic concepts in quantum information / Steven M. Girvin -- Cavity polaritons : crossroad between non-linear optics and atomic condensates / Alberto Amo and Jacqueline Bloch -- Quantum plasmonics / Darrick Chang -- Quantum polaritonics / S. Portolan, O. Di Stefano and S. Savasta -- Optical signal processing with enhanced nonlinearity in photonic crystals / A. De Rossi and S. Combrí The physics of strong light-matter coupling has been addressed in different scientific communities over the last three decades. Since the early eighties, atoms coupled to optical and microwave cavities have led to pioneering demonstrations of cavity quantum electrodynamics, Gedanken experiments, and building blocks for quantum information processing, for which the Nobel Prize in Physics was awarded in 2012. In the framework of semiconducting devices, strong coupling has allowed investigations into the physics of Bose gases in solid-state environments, and the latter holds promise for exploiting light-matter interaction at the single-photon level in scalable architectures. More recently, impressive developments in the so-called superconducting circuit QED have opened another fundamental playground to revisit cavity quantum electrodynamics for practical and fundamental purposes. This book aims at developing the necessary interface between these communities, by providing future researchers with a robust conceptual, theoretical and experimental basis on strong light-matter coupling, both in the classical and in the quantum regimes. In addition, the emphasis is on new forefront research topics currently developed around the physics of strong light-matter interaction in the atomic and solid-state scenarios SCIENCE / Physics / Optics & Light bisacsh Quantum electrodynamics fast Quantum optics fast Quantum optics Quantum electrodynamics Quantenoptik (DE-588)4047990-0 gnd Quantenelektrodynamik (DE-588)4047982-1 gnd |
subject_GND | (DE-588)4047990-0 (DE-588)4047982-1 |
title | Strong light-matter coupling from atoms to solid-state systems |
title_auth | Strong light-matter coupling from atoms to solid-state systems |
title_exact_search | Strong light-matter coupling from atoms to solid-state systems |
title_full | Strong light-matter coupling from atoms to solid-state systems edited by Alexia Auffèves (Institut Néel-CNRS, France), Dario Gerace (Università di Pavia, Italy), Maxime Richard (Institut Néel-CNRS, France), Stefano Portolan (Institut Néel-CNRS, France), Marcelo de França Santos (Universidade Federal de Minas Gerais, Brazil), Leong Chuan Kwek (National University of Singapore, Singapore) & Christian Miniatura (National University of Singapore, Singapore) |
title_fullStr | Strong light-matter coupling from atoms to solid-state systems edited by Alexia Auffèves (Institut Néel-CNRS, France), Dario Gerace (Università di Pavia, Italy), Maxime Richard (Institut Néel-CNRS, France), Stefano Portolan (Institut Néel-CNRS, France), Marcelo de França Santos (Universidade Federal de Minas Gerais, Brazil), Leong Chuan Kwek (National University of Singapore, Singapore) & Christian Miniatura (National University of Singapore, Singapore) |
title_full_unstemmed | Strong light-matter coupling from atoms to solid-state systems edited by Alexia Auffèves (Institut Néel-CNRS, France), Dario Gerace (Università di Pavia, Italy), Maxime Richard (Institut Néel-CNRS, France), Stefano Portolan (Institut Néel-CNRS, France), Marcelo de França Santos (Universidade Federal de Minas Gerais, Brazil), Leong Chuan Kwek (National University of Singapore, Singapore) & Christian Miniatura (National University of Singapore, Singapore) |
title_short | Strong light-matter coupling |
title_sort | strong light matter coupling from atoms to solid state systems |
title_sub | from atoms to solid-state systems |
topic | SCIENCE / Physics / Optics & Light bisacsh Quantum electrodynamics fast Quantum optics fast Quantum optics Quantum electrodynamics Quantenoptik (DE-588)4047990-0 gnd Quantenelektrodynamik (DE-588)4047982-1 gnd |
topic_facet | SCIENCE / Physics / Optics & Light Quantum electrodynamics Quantum optics Quantenoptik Quantenelektrodynamik |
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