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Loophole-Free Test of Quantum Nonlocality and Efficient Noiseless Amplification for Large Optical Fields : 허점 없는 양자 비국소성 테스트와 큰 광학적 필드에 효율적인 소음없는 증폭

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dc.contributor.advisor정현석-
dc.contributor.authorJinwoo Park-
dc.date.accessioned2017-07-19T06:08:35Z-
dc.date.available2017-07-19T06:08:35Z-
dc.date.issued2015-08-
dc.identifier.other000000066930-
dc.identifier.urihttp://dcollection.snu.ac.kr:80/jsp/common/DcLoOrgPer.jsp?sItemId=000000066930-
dc.description학위논문(박사)--서울대학교 대학원 :자연과학대학 물리·천문학부,2015. 8. 정현석.-
dc.description.abstractThe concept of quantum nonlocality was used first by Einstein, Podolsky, and Rosen with intention to indicate the paradox of quantum physics.
However, quantum nonlocality turns out to be one of the most important resource for quantum information processing, which can be used for quantum teleportation and device-independent quantum key distribution not to mention of violation of local realism assumed by classical physics.

In the beginning of this dissertation, we investigate the hierarchy of quantum nonlocality with emphasis on relation between EPR-steerable states and quantum teleportable states. Efficient ways to demonstrate Bell nonlocality and EPR steering are followed.

Demonstration of Bell nonlocality can rule out local realism assumed by classical physics. The major two loopholes are required to be closed for the perfect demonstration, which are so called detection loophole and locality loophole. Locality loophole was solely closed by using photonic quantum system, while detection loophole could be closed alone by using atomic quantum system with high detection efficiency. Up to now, demonstration which closes both of loopholes does not exist. Taking advantage from both systems, we have proposed a scheme which uses a photon in cavity and a Rydberg atom is suggested and experimental conditions which can close locality loophole is analyzed. If we can inhibit spontaneous emission by using thin cryogenic superconducting cylindrical cavity and enhance photon storage time of the main cavity, the locality loophole can be avoided.

EPR steering is the ability to change the quantum phenomena of space-likely separated system from the measurement on the other system.
Demonstration of EPR steering less suffers from detection loophole and locality loophole than Bell nonlocality.
We investigate the EPR steering of entangled coherent states using homodyne detection, photon parity detection, and photon on/off detection. The maximum value of EPR steering inequality is achieved by low-efficiency homodyne detection with enough amplitude of entangled coherent state. If entangled coherent state can be successfully generated, the demonstration of EPR steering may be feasible considering the practical efficiency of photon on/off detection.

The remainder of this dissertation is about efficient noiseless linear amplification using photon addition and subtraction. Numerous studies have shown that various quantum information processing can be enhanced by the noiseless amplification of continuous variable quantum states. It has been verified that the photon-addition-then-subtraction operator is efficient noiseless amplifier for small coherent states. We show that the double-photon-addition operator is more effective amplifier for medium and large amplitude coherent states in terms of equivalent input noise, which considers the noise and the gain caused by the amplifier on equal footing. The extension to superpositions of coherent states is also made with analogous results followed, which can be inferred from the optimal phase uncertainty computed from quantum Fisher information.
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dc.description.tableofcontentsAbstract

I. Introduction

II. Basic Concepts and Hierarchy of Quantum Nonlocality
2.1 EPR paradox
2.2 Schrodigners Response to EPR
2.3 Bell Nonlocality
2.4 Entanglement
2.5 Quantum Teleportation
2.6 EPR Steering
2.7 EPR Steering and Quantum Teleportation

III. Bell Inequality Test with Atom-Photon Entangled States
3.1 Introduction
3.2 Basic Elements for Bell InequalityTests
3.3 Bell-CHSH Inequality Tests with Atom-Field Entanglement
3.3.1 On/Off Measurement for Field Mode
3.3.2 Photon Number Parity Measurement for Field Mode
3.4 Approach Using Indirect Measurement
3.5 Decoherence and Loopholes
3.5.1 Decoherence Effects in the Cavity-Atom System
3.5.2 Bell Violation and Separations under Practical Conditions without a Cylindrical Cavity
3.5.3 Requirements for a Bell Test Free from the Locality Loop- hole with a Cylindrical Cavity
3.6 Solutions of the Master Equation for Matrix Elements
3.6.1 Spontaneous Emission for Atom
3.6.2 Dissipation for Cavity Field
3.6.3 Atom-Field Interaction with Spontaneous Emission and CavityDissipation
3.7 Derivation of the Density Matrices for Atom-Field Entanglement and theCorrelationFunction
3.7.1 Atom-field Entanglement Generated Under Decoherence Effects
3.7.2 Atom-Field Entanglement after Traveling for the Spacelike Separation
3.7.3 Effects with Atom B for Indirect Measurement
3.7.4 Decoherence Right before Final Measurements and the CorrelationFunction
3.8 Remarks

IV. EPR Steering with Entangled Coherent States
4.1 Introduction
4.2 EPR-Steering Inequalities with Entangled Coherent States
4.2.1 Homodyne Measurement with Nonlinear Interaction and Displacement Operation
4.2.2 Photon Parity Measurement with Displacement Operation
4.2.3 Photon On/Off Measurement with Displacement Operation
4.2.4 Finite-SettingEPRSteering
4.3 On/Off Steering with Efficiency
4.4 Remarks

V. Noiseless Linear Amplification of Superpositions of Coherent States Using Photon Additionand Subtraction
5.1 Introduction
5.2 AmplificationofCoherentStates
5.2.1 One-CycleAmplification
5.2.2 Two-Cycle Amplification
5.3 Amplification of Superpositions of Coherent States
5.3.1 Even and Odd Superposition of Coherent States
5.3.2 Squeezed States Approximation with Amplification
5.4 Remarks

VI. Conclusion

Bibliography

Index
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dc.format.extentxxii, 116-
dc.language.isoeng-
dc.publisher서울대학교 대학원-
dc.subject양자 비국소성, 소음없는 증폭, 벨 부등식, 양자조정, 텔레포테이션, 계층 구조-
dc.subject.ddc523-
dc.titleLoophole-Free Test of Quantum Nonlocality and Efficient Noiseless Amplification for Large Optical Fields-
dc.title.alternative허점 없는 양자 비국소성 테스트와 큰 광학적 필드에 효율적인 소음없는 증폭-
dc.typeThesis-
dc.typeDissertation-
dc.contributor.AlternativeAuthor박진우-
dc.contributor.department자연과학대학 물리·천문학부-
dc.description.degreeDoctor-
dc.date.awarded2015-08-
dc.contributor.major양자광학이론-
dc.identifier.holdings000000000023▲000000000025▲000000066930▲-
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