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Zero-point oscillations, zero-point fluctuations, and fluctuations of zero-point oscillations

机译:零点振荡,零点波动和零点振荡的波动

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摘要

Several physical effects and methodological issues relating to the ground state of an oscillator are considered. Even in the simplest case of an ideal lossless harmonic oscillator, its ground state exhibits properties that are unusual from the classical point of view. In particular, the mean value of the product of two non-negative observables, kinetic and potential energies, is negative in the ground state. It is shown that semiclassical and rigorous quantum approaches yield substantially different results for the ground state energy fluctuations of an oscillator with finite losses. The dependence of zero-point fluctuations on the boundary conditions is considered. Using this dependence, it is possible to transmit information without emitting electromagnetic quanta. Fluctuations of electromagnetic pressure of zero-point oscillations are analyzed, and the corresponding mechanical friction is considered. This friction can be viewed as the most fundamental mechanism limiting the quality factor of mechanical oscillators. Observation of these effects exceeds the possibilities of contemporary experimental physics but almost undoubtedly will be possible in the near future.
机译:考虑了与振荡器的基态有关的几种物理效应和方法论问题。即使在最理想的无损谐波振荡器的最简单情况下,其基态也表现出从经典角度来看不寻常的特性。特别是,两个非负可观测量(动能和势能)乘积的平均值在基态下为负。结果表明,对于具有有限损耗的振荡器的基态能量波动,半经典严格的量子方法得出的结果大不相同。考虑零点波动对边界条件的依赖性。利用这种依赖性,可以在不发射电磁量子的情况下发送信息。分析了零点振荡电磁压力的波动,并考虑了相应的机械摩擦。可以将这种摩擦视为限制机械振荡器质量因数的最基本机制。对这些效应的观察超出了当代实验物理学的可能性,但几乎毫无疑问将在不久的将来实现。

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