论文标题
NV中心耦合到超小模式的体积腔:在200 K时无法区分的光子的高效率来源
The NV centre coupled to an ultra-small mode volume cavity: a high efficiency source of indistinguishable photons at 200 K
论文作者
论文摘要
固态原子状系统对线性光学量子计算和量子通信具有很大的希望,但由于表面电荷而受到声子边带的负担,并扩大了。然而,连接到小模式的腔腔将允许从高度低位的发射器中提取高率。我们考虑了Diamond的氮空位中心,该系统被认为具有较差的量子光学界面,具有高度可区分的光子,并设计了一种氮化硅腔,可在200 K处有效提取99%的光子,其性能> 50%> 50%,可通过外部过滤进行即兴。我们使用FDTD模拟分析了我们的设计,并使用腔QED主方程在强耦合和超越强耦合的情况下处理光发射,其中包括ZPL扩展和边带发射。模拟设计是紧凑的(<10 um),并且由于其平面几何形状,可以使用标准的硅过程制造。因此,我们的工作表明可扩展的非晶原子样光子的有效来源可扩展。
Solid state atom-like systems have great promise for linear optic quantum computing and quantum communication but are burdened by phonon sidebands and broadening due to surface charges. Nevertheless, coupling to a small mode volume cavity would allow high rates of extraction from even highly dephased emitters. We consider the nitrogen vacancy centre in diamond, a system understood to have a poor quantum optics interface with highly distinguishable photons, and design a silicon nitride cavity that allows 99 % efficient extraction of photons at 200 K with an indistinguishability of > 50%, improvable by external filtering. We analyse our design using FDTD simulations, and treat optical emission using a cavity QED master equation valid at and beyond strong coupling and which includes both ZPL broadening and sideband emission. The simulated design is compact (< 10 um), and owing to its planar geometry, can be fabricated using standard silicon processes. Our work therefore points towards scalable fabrication of non-cryogenic atom-like efficient sources of indistinguishable photons.