论文标题

KHz-MHz引力波检测器的高光谱比率六角形棱镜的光学诱捕器

Optical trapping of high-aspect-ratio NaYF hexagonal prisms for kHz-MHz gravitational wave detectors

论文作者

Winstone, George, Wang, Zhiyuan, Klomp, Shelby, Felsted, Greg, Laeuger, Andrew, Grass, Daniel, Aggarwal, Nancy, Sprague, Jacob, Pauzauskie, Peter J., Larson, Shane L., Kalogera, Vicky, Geraci, Andrew A.

论文摘要

我们提出了有关YB掺杂的$β-$ nayf子波长thickness-thickentio thick ratio hexagonal棱镜的光学诱捕的实验结果。棱镜使用光学常驻波捕获在真空中,沿着梁传播方向将正常向量定向到其脸部,并表现出三个转换和两个扭转自由度的特征模式。将测得的运动光谱与数值模拟进行比较。这种类似板的几何形状同时使捕获具有低光子回收,高质量和高陷阱频率的捕获,这可能会导致悬浮的传感器探测器(LSD)中高频引力波搜索的进步,目前正在构造中。此处使用的材料先前已被证明可以通过激光制冷表现出内部冷却,并用合适的波长照明并照亮。在我们工作的背景下,采用这种激光制冷方法可以使更高的陷阱强度,因此,用于接近数百kHz范围的重力波搜索的较高的陷阱频率。

We present experimental results on optical trapping of Yb-doped $β-$NaYF sub-wavelength-thickness high-aspect-ratio hexagonal prisms with a micron-scale radius. The prisms are trapped in vacuum using an optical standing wave, oriented with the normal vector to their face along the beam propagation direction, and exhibit characteristic modes of three translational and two torsional degrees of freedom. The measured motional spectra are compared with numerical simulations. This plate-like geometry simultaneously enables trapping with low photon-recoil-heating, high mass, and high trap frequency, potentially leading to advances in high frequency gravitational wave searches in the Levitated Sensor Detector (LSD), currently under construction. The material used here has previously been shown to exhibit internal cooling via laser refrigeration when optically trapped and illuminated with light of suitable wavelength. Employing such laser refrigeration methods in the context of our work may enable higher trapping intensity thus and higher trap frequencies for gravitational wave searches approaching the several hundred kHz range.

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