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Quantum Optics 2 - Two photons and more · LearnSpace
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Quantum Optics 2 - Two photons and more

Курс от École Polytechnique
Уровень не указан≈ 12.9 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

"Quantum Optics 1, Single photons", allowed learners to be introduced to the basic principles of light quantization, and to the standard formalism of Quantum Optics. All the examples were taken in single photons phenomena, including applications to quantum technologies. In the same spirit, "Quantum Optics 2, Two photons and more", will allow learners to use the Quantum Optics formalism to describe entangled photon, a unique feature at the root of the second quantum revolution and its applications to quantum technologies. Learners will also discover how the Quantum Optics formalism allows one to describe classical light, either coherent such as laser light, or incoherent such as thermal radiation. Using a many photons description, it is possible to derive the so-called Standard Quantum Limit (SQL), which applies to classical light, and to understand how new kinds of quantum states of light, such as squeezed states of light, allow one to beat the SQL, one of the achievements of quantum metrology. Several examples of Quantum Technologies based on entangled photons will be presented, firstly in quantum communication, in particular Quantum Teleportation and Quantum Cryptography. Quantum Computing and Quantum Simulation will also be presented, including some insights into the recently proposed Noisy Intermediate Scale Quantum (NISQ) computing, which raises a serious hope to demonstrate, in a near future, the actively searched quantum advantage, ie, the possibility to effect calculations exponentially faster than with classical computers.

Навыки, которые вы освоите

Quantum computingCryptographic ProtocolsTelecommunicationsSimulationsCryptographyMathematical ModelingExperimentationEmerging TechnologiesPhysics

Программа курса

5 модулей · 65 учебных материалов

01QUASI-CLASSICAL STATES OF RADIATION: SINGLE MODE CASE14 материалов

Lesson 1 - Quasi-classical states of radiation: single mode case

1.0 IntroductionВидео1.1 Quantum Optics formalism in a nutshellВидео1.2 Quasi-classical state: Definition and elementary propertiesВидео1.3 Average field. DispersionВидео

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Alain Aspect

Professor

Michel Brune

Professor

Quantum Optics 2 - Two photons and more
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Обучение на Coursera

≈ 12.9 ч

5 модулей

Язык: Английский

Субтитры: Арабский, Французский, Украинский, Китайский (Китай), Греческий, Итальянский, Бразильский португальский, Нидерландский, Корейский, Немецкий, Русский, Тайский, Индонезийский, Шведский, Турецкий, Испанский, Хинди, Японский, Казахский, Польский

Часть программы вашего университета
1.4 Photon numberВидео
1.5 Photoelectric signals: fully classicalВидео
1.6 Transformation on a beam splitterВидео
1.6 Graded quizЗадание
1.7 Single mode laser: an emblematic exampleВидео
1.8 Freely propagating beam: shot noiseВидео
1.9 The standard shot noise formula: photocurrent fluctuationsВидео
1.10 Conclusion: more than a classical macroscopic limit of quantum radiationВидео
1.10 Graded quizЗадание

Homework 1: Quasi-classical states of radiation

Homework 1: Quasi-classical states of radiationЧтение
02MULTIMODE QUASI-CLASSICAL STATES OF RADIATION10 материалов

Lesson 2 - Multimode quasi-classical states of radiation

2.0 IntroductionВидео2.1 Multimode quantum optics in a nutshellВидео2.2 Multimode quasi-classical states: Poisson distribution of photonsВидео2.3 Quasi-classical wave packet; case of less than one photonВидео2.4 Quasi-classical wave packet on a beam splitterВидео2.4 Graded quizЗадание2.5 Beat note between two laser beams; heterodyne detectionВидео2.5 Graded QuizЗадание2.6 Incoherent multimode radiation; classical vs quantum averageВидео2.7 Beyond classical lightВидео
03SQUEEZED LIGHT: BEATING THE STANDARD QUANTUM LIMIT15 материалов

Lesson 3 - Squeezed light: beating the standard quantum limit

3.0 IntroductionВидео3.1 Balanced homodyne detectionВидео3.2 Quadrature componentsВидео3.3 Complex plane representation: quadratures, fieldВидео3.4 Squeezed state: definition, propertiesВидео3.5 Measurements below the SQLВидео3.5 Graded QuizЗадание3.6 Squeezing is fragileВидео3.6 Graded QuizЗадание3.7 Beating the SQL in a Mach-Zehnder interferometerВидео3.7 Graded quizЗадание3.8 Beating the SQL in Gravitational Waves detectionВидео3.8 Graded quizЗадание3.9 A genuine quantum technologyВидеоCarlton Caves first paper about squeezed lightЧтение
04ENTANGLEMENT: A REVOLUTIONARY CONCEPT15 материалов

Lesson 4 - Entanglement: a revolutionnary concept

4.0 IntroductionВидео4.1 Polarized one photon wave packet: an almost ideal two-level systemВидео4.2 Pairs of photons entangled in polarizationВидео4.2 Graded QuizЗадание4.3 How to understand the EPR correlations?Видео4.3 Graded QuizЗадание4.4 Bell’s inequalities: the possibility to settle the debate experimentallyВидео4.4 Graded QuizЗадание4.5 Experiments: local realism untenableВидео4.5 Graded QuizЗадание4.6 Conclusion. Entanglement at the root of quantum technologies of the second quantum revolutionВидеоBell 1964 paper on inequalitiesЧтениеAA 2001 Bell theorem: the naive view of an experimentalistЧтениеAA 2015 Closing the doorЧтениеAA 2003 Bell foreword: the second quantum revolutionЧтение
05ENTANGLEMENT BASED QUANTUM TECHNOLOGIES11 материалов

Lesson 5 - Entanglement based quantum technologies

5.0 IntroductionВидео5.1 Quantum Key Distribution for cryptography: Ekert protocolВидео5.1 Graded QuizЗадание5.2 QKD in the real world: need for quantum repeatersВидео5.3 Bell states, Bell measurement: a basic tool in quantum informationВидео5.4 Quantum teleportationВидео5.4 Graded QuizЗадание5.5 Quantum simulationВидео5.5 Graded QuizЗадание5.6 Programmable quantum computingВидео5.7 Conclusion: quantum optics at the heart of the second quantum revolutionВидео