A levitated atom-nanosphere hybrid quantum system

Amy Hopper, Peter F Barker
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Abstract

Near-field, radially symmetric optical potentials centred around a levitated nanosphere can be used for sympathetic cooling and for creating a bound nanosphere-atom system analogous to a large molecule. We demonstrate that the long range, Coulomb-like potential produced by a single blue detuned field increases the collisional cross-section by eight orders of magnitude, allowing fast sympathetic cooling of a trapped nanosphere to microKelvin temperatures using cold atoms. By using two optical fields to create a combination of repulsive and attractive potentials, we demonstrate that a cold atom can be bound to a nanosphere creating a new levitated hybrid quantum system suitable for exploring quantum mechanics with massive particles.
悬浮原子-纳米圈混合量子系统
以悬浮纳米球为中心的近场径向对称光学势能可用于共振冷却,并可用于创建类似于大分子的束缚纳米球-原子系统。我们证明,单个蓝色失谐场产生的长程库仑势能可将碰撞截面提高八个数量级,从而利用冷原子将被困纳米球快速共振冷却到微开尔文温度。通过使用两个光场来创建排斥势和吸引势的组合,我们证明了冷原子可以与纳米球结合,从而创建一个新的悬浮混合量子系统,适用于探索大质量粒子的量子力学。
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