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Towards real-world applications of levitated optomechanics

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arxiv 2407.12496 v1 pith:ZHF5SLVQ submitted 2024-07-17 physics.optics physics.app-phphysics.ins-det

Towards real-world applications of levitated optomechanics

classification physics.optics physics.app-phphysics.ins-det
keywords levitatedapplicationsparticlesoptomechanicsvacuumbrieflyfieldlevitation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Levitated optomechanics, a rapidly expanding field that employs light to monitor and manipulate the mechanical motion of levitated objects, is increasingly relevant across physics, engineering, and other fields. This technique, which involves levitating micro- and nano-scale objects in a vacuum where they exhibit high-quality motion, provides an essential platform for precision measurements. Noted for their ultra-high sensitivity, levitated particles hold potential for a wide range of real-world applications. This perspective article briefly introduces the principle of optical levitation and the dynamics of levitated particles. It then reviews the emerging applications of levitated particles in ultrasensitive force and torque measurements, acceleration and rotation sensing, electric and magnetic field detection, scanning probe microscopy, localized vacuum pressure gauging, acoustic transduction, and chemical and biological sensing. Moreover, we discuss the present challenges and explore opportunities to minimize and integrate levitation systems for broader applications. We also briefly review optomechanics with ion traps and magnetic traps which can levitate particles in high vacuum without laser heating.

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  1. Second-harmonic generation from an optically levitated KTP nanocrystal in vacuum

    physics.optics 2026-07 accept novelty 7.0

    KTP nanocrystals are optically levitated in vacuum and produce SHG whose polarization tracks the trapping laser via optical-torque alignment of the crystal Z-axis.