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Photoluminescence from voids created by femtosecond-laser pulses inside cubic-BN

机译:由立方-BN内的飞秒激光脉冲产生的空洞产生的光致发光

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摘要

Photoluminescence (PL) from femtosecond-laser-modified regions inside cubic-boron nitride (c-BN) was measured under UV and visible light excitation. Bright PL at the red spectral range was observed, with a typical excited state lifetime of ∼ 4ns. Sharp emission lines are consistent with PL of intrinsic vibronic defects linked to the nitrogen vacancy formation (via Frenkel pair) observed earlier in high-energy electron-irradiated and ion-implanted c-BN. These, formerly known as the radiation centers, RC1, RC2, and RC3, have been identified at the locus of the voids formed by a single femtosecond-laser pulse. The method is promising to engineer color centers in c-BN for photonic applications.
机译:在紫外和可见光激发下,测量了立方氮化硼(c-BN)内部飞秒激光修饰区域的光致发光(PL)。在红色光谱范围内观察到明亮的PL,典型的激发态寿命约为4ns。尖锐的发射线与固有的电子缺陷的PL一致,该缺陷与先前在高能电子辐照和离子注入c-BN中观察到的氮空位形成(通过Frenkel对)有关。这些,以前称为辐射中心RC1,RC2和RC3,已在由单个飞秒激光脉冲形成的空隙的位置被识别。该方法有望在光子应用的c-BN中设计色心。

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