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From photon momentum transfer to acceleration sensing

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arxiv 2408.07348 v1 pith:YTNHFXB5 submitted 2024-08-14 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords levitationopticalsensingaccelerationaccelerometerapplicationdynamicmomentum
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

As a typical application of photon momentum transfer, optical levitation systems are known for their ideal isolation from mechanical dissipation and thermal noise. These characters offer extraordinary potential for acceleration precision sensing and have attracted extensive attention in both fundamental and applied physics. Although considerable improvements of optical levitation accelerometers has been reported, the dynamic testing of the sensing performance remains a crucial challenge before the utilization in practical application scenarios. In this work, we present a dual-beam optical levitation accelerometer and demonstrate the test with dynamic inputs for the first time. An acceleration sensing sensitivity of $0.1\mu g$ and a measurement range of $ 1g$ are achieved. These advancements solidify the potential of optical levitation accelerometer for deployment in practical domains, including navigation, intelligent driving, and industrial automation, building a bridge between the laboratory systems and real-world applications.

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