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六方氮化硼中单个缺陷的光吸收与发射机制

Optical Absorption and Emission Mechanisms of Single Defects in Hexagonal Boron Nitride.

作者信息

Jungwirth Nicholas R, Fuchs Gregory D

机构信息

Cornell University, Ithaca, New York 14853, USA.

出版信息

Phys Rev Lett. 2017 Aug 4;119(5):057401. doi: 10.1103/PhysRevLett.119.057401. Epub 2017 Jul 31.

Abstract

We investigate the polarization selection rules of sharp zero-phonon lines (ZPLs) from isolated defects in hexagonal boron nitride (HBN) and compare our findings with the predictions of a Huang-Rhys model involving two electronic states. Our survey, which spans the spectral range ∼550-740  nm, reveals that, in disagreement with a two-level model, the absorption and emission dipoles are often misaligned. We relate the dipole misalignment angle (Δθ) of a ZPL to its energy shift from the excitation energy (ΔE) and find that Δθ≈0° when ΔE corresponds to an allowed HBN phonon frequency and that 0°≤Δθ≤90° when ΔE exceeds the maximum allowed HBN phonon frequency. Consequently, a two-level Huang-Rhys model succeeds at describing excitations mediated by the creation of one optical phonon but fails at describing excitations that require the creation of multiple phonons. We propose that direct excitations requiring the creation of multiple phonons are inefficient due to the low Huang-Rhys factors in HBN and that these ZPLs are instead excited indirectly via an intermediate electronic state. This hypothesis is corroborated by polarization measurements of an individual ZPL excited with two distinct wavelengths that indicate a single ZPL may be excited by multiple mechanisms. These findings provide new insight on the nature of the optical cycle of novel defect-based single-photon sources in HBN.

摘要

我们研究了六方氮化硼(HBN)中孤立缺陷产生的尖锐零声子线(ZPL)的偏振选择规则,并将我们的发现与涉及两个电子态的黄-里斯模型的预测进行了比较。我们的研究覆盖了约550 - 740 nm的光谱范围,结果表明,与两能级模型不同,吸收和发射偶极子常常未对准。我们将ZPL的偶极子未对准角(Δθ)与其相对于激发能量的能量位移(ΔE)联系起来,发现当ΔE对应于HBN的一个允许声子频率时,Δθ≈0°;当ΔE超过HBN的最大允许声子频率时,0°≤Δθ≤90°。因此,两能级黄-里斯模型成功地描述了由一个光学声子的产生介导的激发,但在描述需要产生多个声子的激发时失败了。我们提出,由于HBN中的黄-里斯因子较低,需要产生多个声子的直接激发效率低下,并且这些ZPL反而通过一个中间电子态被间接激发。用两个不同波长激发单个ZPL的偏振测量结果证实了这一假设,该结果表明单个ZPL可能通过多种机制被激发。这些发现为HBN中基于新型缺陷的单光子源的光学循环本质提供了新的见解。

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