论文标题

Purcell增强纳米颗粒中Erbium离子发射的动态控制

Dynamic control of Purcell enhanced emission of erbium ions in nanoparticles

论文作者

Casabone, Bernardo, Deshmukh, Chetan, Liu, Shuping, Serrano, Diana, Ferrier, Alban, Hümmer, Thomas, Goldner, Philippe, Hunger, David, de Riedmatten, Hugues

论文摘要

单个量子发射器与光学腔的相互作用可以实现有效的自旋光子接口,这是量子网络的重要资源。量子发射量自发发射速率的动力控制在量子技术中具有重要意义,例如用于塑造发射的光子波形,以产生量子纠缠或在防止光子发射的同时驱动光学转变。在这里,我们证明了purcell增强掺入纳米颗粒的小离子的发射的动力控制。通过将掺杂的纳米颗粒嵌入基于完全可调的高纤维光纤微腔中,我们表明,我们可以通过在时间尺度上以次纳米的精度控制其长度,从而调整腔体的频率,并超出两个以上的数量级,比Erbium ions的天然寿命更快。这使我们能够实时塑造purcell增强离子的发射,并对发射光子的波形充分控制。这种能力为实现具有可控波形的固态旋转和单电信光子之间有效的纳米级量子界面的前景开放,并实现了与光腔耦合的稀有地球离子量子量之间的量子门。

The interaction of single quantum emitters with an optical cavity enables the realization of efficient spin-photon interfaces, an essential resource for quantum networks. The dynamical control of the spontaneous emission rate of quantum emitters in cavities has important implications in quantum technologies, e.g. for shaping the emitted photons waveform, for generating quantum entanglement, or for driving coherently the optical transition while preventing photon emission. Here we demonstrate the dynamical control of the Purcell enhanced emission of a small ensemble of erbium ions doped into nanoparticles. By embedding the doped nanoparticles into a fully tunable high finesse fiber based optical microcavity, we show that we can tune the cavity on- and out of-resonance by controlling its length with sub-nanometer precision, on a time scale more than two orders of magnitude faster than the natural lifetime of the erbium ions. This allows us to shape in real time the Purcell enhanced emission of the ions and to achieve full control over the emitted photons' waveforms. This capability opens prospects for the realization of efficient nanoscale quantum interfaces between solid-state spins and single telecom photons with controllable waveform, and for the realization of quantum gates between rare-earth ion qubits coupled to an optical cavity.

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