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Time and Matter in the Interaction between Gravity and Quantum Fluids: Are there Macroscopic Quantum Transducers between Gravitational and Electromagnetic waves?

机译:引力与量子流体之间相互作用的时间和物质:引力波与电磁波之间是否存在宏观量子换能器?

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摘要

Measurements of the tunneling time are briefly reviewed. Next, time and matter in general relativity and quantum mechanics is examined. In particular, the question arises: How does gravitational radiation interact with a coherent quantum many-body system (a ``quantum fluid'')? A minimal coupling rule for the coupling of the electron spin to curved spacetime in general relativity implies the possibility of a coupling between electromagnetic (EM) and gravitational (GR) radiation mediated by a quantum Hall fluid. This suggests that quantum transducers between these two kinds of radiation fields might exist. We report here on a first attempt at a Hertz-type experiment, in which a high-$\rm{T_c}$ superconductor (YBCO) was the material used as a quantum transducer to convert EM into GR microwaves, and a second piece of YBCO in a separate apparatus was used to back-convert GR into EM microwaves. An upper limit on the conversion efficiency of YBCO was measured to be $1.6\times10^{-5}$.
机译:简要回顾了隧道时间的测量。接下来,研究广义相对论和量子力学中的时间和物质。特别是出现了一个问题:引力辐射如何与相干的量子多体系统(``量子流体'')相互作用?在广义相对论中,电子自旋耦合到弯曲时空的最小耦合规则意味着由量子霍尔流体介导的电磁(EM)辐射和重力(GR)辐射之间可能存在耦合。这表明这两种辐射场之间可能存在量子换能器。我们在此报告的是一次赫兹型实验的首次尝试,其中高$ \ rm {T_c} $超导体(YBCO)是用作将EM转换为GR微波的量子换能器的材料,使用另一台设备中的YBCO将GR反向转换为EM微波。 YBCO的转化效率的上限测得为$ 1.6×10 ^ {-5} $。

著录项

  • 作者

    Chiao, R Y; Fitelson, W J;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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