17 times higher than theoretical limit."/> SUPERSENSITIVE LASER GRAVITATIONAL WAVE DETECTOR BASED ON TWO-DIMENSIONAL PRISM RESONATOR OF 'WHISPERING GALLERY' TYPE
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SUPERSENSITIVE LASER GRAVITATIONAL WAVE DETECTOR BASED ON TWO-DIMENSIONAL PRISM RESONATOR OF 'WHISPERING GALLERY' TYPE

机译:基于“窃窃私语”类型二维棱镜的超灵敏激光重力波检测器

摘要

The invention describes a method of reaching high sensitivity of gravitational wave detector based on two-dimensional prism resonator of a He-Ne laser of "Whispering gallery" (WG) type. The WG effect is achieved by that the resonator is formed from rectangular prism-roofs, in which the basic law of total internal reflection (TIR) for electromagnetic waves of optical range is used. The TIR law in the proposed resonator scheme creates the WG effect. The WG effect characterises long lifetime of photon in the resonator. Ultra-narrow width of generation line of the WG two-dimensional prism resonator is formed by 1) long lifetime of photon in the resonator, 2) narrow width of a passive resonator line, 3) setting to ziro value speed projections of all excited atoms. Based on the above properties, the value of shot noise of photons is 1017 times higher than theoretical limit.
机译:本发明描述了一种基于“耳语画廊”(WG)型He-Ne激光器的二维棱镜谐振器的达到高灵敏度的重力波检测器的方法。 WG效果是通过将谐振器由矩形棱柱形屋顶形成的,其中使用了光学范围电磁波的全内反射(TIR)的基本定律。所提出的谐振器方案中的TIR法则会产生WG效应。 WG效应表征了谐振器中光子的长寿命。 WG二维棱镜谐振器的产生线的超窄宽度是由以下因素形成的:1)谐振器中光子的长寿命; 2)无源谐振器线的宽度较窄; 3)将所有激发原子的速度值设定为ziro值。基于上述特性,光子的散粒噪声值比理论极限高10 17 倍。

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