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Scanning a photonic crystal slab nanocavity by condensation of xenon

机译:通过氙的冷凝扫描光子晶体平板的纳米腔

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Allowing xenon or nitrogen gas to condense onto a photonic crystal slab nanocavity maintained at 10-20 K results in shifts of the nanocavity mode wavelength by as much as 5 nm (≈ 4 meV). This occurs in spite of the fact that the mode defect is achieved by omitting three holes to form the spacer. This technique should be useful in changing the detuning between a single quantum dot transition and the nanocavity mode for cavity quantum electrodynamics experiments, such as mapping out a strong coupling anticrossing curve. Compared with temperature scanning, it has a much larger scan range and avoids phonon broadening.
机译:允许氙气或氮气凝结在保持在10-20 K的光子晶体平板上的纳米腔会导致纳米腔模式波长偏移多达5 nm(≈4 meV)。尽管通过省略三个孔以形成间隔物来实现模式缺陷,但仍会发生这种情况。该技术对于改变单个量子点跃迁和纳米腔模式之间的失谐,对于腔量子电动力学实验(例如绘制强耦合反交叉曲线)应是有用的。与温度扫描相比,它具有更大的扫描范围,并且避免了声子变宽。

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