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Quantum superposition of distinct macroscopic states

机译:不同宏观状态的量子叠加

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In 1935, Schroedinger attempted to demonstrate the limitations of quantum mechanics using a thought experiment in which a cat is put in a quantum superposition of alive and dead states. The idea remained an academic curiosity until the 1980s when it was proposed that, under suitable conditions, a macroscopic object with many microscopic degrees of freedom could behave quantum mechanically, provided that it was sufficiently decoupled from its environment. Although much progress has been made in demonstrating the macroscopic quantum behaviour of various systems such as superconductors, nanoscale magnets, laser-cooled trapped ions, photons in a microwave cavity and C_(60) molecules, there has been no experimental demonstration of a quantum superposition of truly macroscopically distinct states. Here we present experimental evidence that a superconducting quantum interference device (SQUID) can be put into a superposition of two magnetic-flux states: one corresponding to a few microamperes of current flowing clockwise, the other corresponding to the same amount of current flowing anticlockwise.
机译:1935年,施罗丁格(Schroedinger)试图通过思想实验来证明量子力学的局限性,在这种思想实验中,猫被置于生命和死亡状态的量子叠加中。直到1980年代,当人们提出在适当的条件下,具有许多微观自由度的宏观物体只要与环境充分脱钩时,它就可以在力学上表现出量子力学。尽管在证明各种系统的宏观量子行为方面已取得了很大进展,例如超导体,纳米级磁体,激光冷却的俘获离子,微波腔中的光子和C_(60)分子,但没有实验证明量子叠加真正在宏观上截然不同的状态。在这里,我们提供实验证据,可以将超导量子干涉装置(SQUID)置于两种磁通状态的叠加状态:一种对应于顺时针方向流动的几微安培电流,另一种对应于逆时针方向流动的同等电流量。

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