论文标题
硅纳米球的纳米力学测试,用于悬浮的光学机械实验
Nanomechanical testing of silica nanospheres for levitated optomechanics experiments
论文作者
论文摘要
光向倾斜的介电颗粒可以用作微弱力量和扭矩的超敏感探测器,作为量子信息科学中使用的工具,并用作宏观系统中量子相干性的测试床。了解颗粒的结构和光学特性对于校准此类实验的灵敏度很重要。在这里,我们报告了二氧化硅纳米球的纳米力学测试的结果,并研究了一种退火方法,该方法可以根据样品的弹性模量在样品中更接近散装行为。这些结果以及我们对高诱捕激光强度在退火和生长的纳米球中高真空中的光学诱饵寿命的实验研究,用于提供对样品中孔隙度和非球形性效果的理论分析,从而确定纳米球的捕获机构与非bulkica proporties nananospheres的可能机制。
Optically-levitated dielectric particles can serve as ultra-sensitive detectors of feeble forces and torques, as tools for use in quantum information science, and as a testbed for quantum coherence in macroscopic systems. Knowledge of the structural and optical properties of the particles is important for calibrating the sensitivity of such experiments. Here we report the results of nanomechanical testing of silica nanospheres and investigate an annealing approach which can produce closer to bulk-like behavior in the samples in terms of their elastic moduli. These results, combined with our experimental investigations of optical trap lifetimes in high vacuum at high trapping-laser intensity for both annealed and as-grown nanospheres, were used to provide a theoretical analysis of the effects of porosity and non-sphericity in the samples, identifying possible mechanisms of trapping instabilities for nanospheres with non-bulk-silica-like properties.