Atomic “bomb testing”: the Elitzur–Vaidman experiment violates the Leggett–Garg inequality

被引:0
|
作者
Carsten Robens
Wolfgang Alt
Clive Emary
Dieter Meschede
Andrea Alberti
机构
[1] Universität Bonn,Institut Für Angewandte Physik
[2] Newcastle University,Joint Quantum Centre Durham
来源
Applied Physics B | 2017年 / 123卷
关键词
Optical Lattice; Microwave Pulse; Superposition State; Trap Atom; Bomb Test;
D O I
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学科分类号
摘要
Elitzur and Vaidman have proposed a measurement scheme that, based on the quantum superposition principle, allows one to detect the presence of an object—in a dramatic scenario, a bomb—without interacting with it. It was pointed out by Ghirardi that this interaction-free measurement scheme can be put in direct relation with falsification tests of the macro-realistic worldview. Here we have implemented the “bomb test” with a single atom trapped in a spin-dependent optical lattice to show explicitly a violation of the Leggett–Garg inequality—a quantitative criterion fulfilled by macro-realistic physical theories. To perform interaction-free measurements, we have implemented a novel measurement method that correlates spin and position of the atom. This method, which quantum mechanically entangles spin and position, finds general application for spin measurements, thereby avoiding the shortcomings inherent in the widely used push-out technique. Allowing decoherence to dominate the evolution of our system causes a transition from quantum to classical behavior in fulfillment of the Leggett–Garg inequality.
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    Andrea Alberti
    [J]. Applied Physics B, 2017, 123
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    [J]. APPLIED PHYSICS B-LASERS AND OPTICS, 2017, 123 (01):
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