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Phase locking of the rotation of a graphene nanoplatelet to an RF electric field in a quadrupole ion trap

机译:将石墨烯纳米片的旋转锁定在四极离子阱中的RF电场

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Particle trapping technologies provide the opportunity to study two-dimensional materials that are fully decoupled from substrates. We investigate the dynamics of a rotating micron-scale graphene particle that is levitated in high vacuum in a quadrupole ion trap and probed via optical scattering. The particle is spun to frequencies ranging from hundreds of kHz to above 50 MHz using a circularly polarized laser. We observe phase locking of particle rotation frequency to an applied RF electric field. The rotation frequency can be adjusted by changing the applied field frequency. We discuss prospects for measurements of particle properties enabled by this technique.
机译:粒子捕获技术提供了研究从基板上完全分离的二维材料的机会。我们研究了在四极离子阱中高真空悬浮的旋转微米级石墨烯颗粒的动态,并通过光散射探测。使用圆极化激光器将粒子旋转到从数百kHz到高于50MHz的频率。我们观察粒子旋转频率的相位锁定到施加的RF电场。可以通过改变所施加的场频率来调整旋转频率。我们讨论了通过该技术实现了粒子性能测量的前景。

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