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Highly sensitive detector for detecting gravitational waves based on the relativistic Doppler effect

机译:基于相对论多普勒效应的重力波检测器

摘要

A highly sensitive detector for detecting gravitational waves is presented. According to field quantum theoretical observations, gravitational waves have field quanta (gravitons) with very, very low quantum energy and thus very, very large wavelengths of several thousands of light years, so that the field amplitude of the gravitational wave hardly changes at distances of earthly or near-Earth cosmic dimensions. Therefore, gravitational wave detectors must be extremely sensitive in order to measure gravitational waves. In order to increase the sensitivity, the electrical measurement signal generated by the detector is superimposed by a periodic voltage. The optical analogue in super-resolution microscopy is the SIM (Structured Illumination Microscopy). Moreover, the relativistic Doppler effect is discussed and an explanation for the Pioneer and fly-by anomaly is made.
机译:提出了一种用于检测引力波的高灵敏度检测器。根据场量子理论的观察,引力波具有非常非常低的量子能量的场量子(引力子),因此具有数千光年的非常大的波长,因此引力波的场幅几乎不会在地球或近地宇宙尺寸。因此,重力波检测器必须非常灵敏才能测量重力波。为了提高灵敏度,将检测器生成的电测量信号与周期电压叠加。超分辨率显微镜中的光学类似物是SIM(结构照明显微镜)。此外,讨论了相对论的多普勒效应,并解释了先驱者和飞越异常。

著录项

  • 公开/公告号DE102018003562A1

    专利类型

  • 公开/公告日2019-11-07

    原文格式PDF

  • 申请/专利权人 HORST WOCHNOWSKI;

    申请/专利号DE20181003562

  • 发明设计人 GLEICH ANMELDER;

    申请日2018-05-02

  • 分类号G01V7;

  • 国家 DE

  • 入库时间 2022-08-21 11:44:55

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