论文标题

新型材料中电子特性的光学微波泵探针研究

Optical-microwave pump-probe studies of electronic properties in novel materials

论文作者

Kollarics, S., Bojtor, A., Koltai, K., Márkus, B. G., Holczer, K., Volk, J., Klujber, G., Szieberth, M., Simon, F.

论文摘要

合并的微波光泵探针方法正在兴起研究自旋量子中心的量子状态和半导体中的电荷动力学。主要的障碍是微波辐射/检测电路的有限带宽,可以通过使用宽带共面波导(CPW)来克服。我们介绍了两个光谱仪的开发和性能表征:光学检测到的磁共振光谱仪(ODMR)和微波检测到的光电导率测量。在第一个方法中,光作为检测,微波引起了研究的介质,而第二个角色则互换。通过测量Diamond的氮 - 视牙中心上的ODMR图并在P掺杂硅中分辨出光导不传导性来证明性能。结果表明,微波辐射与样品的有效耦合,以及对样品电导率的微小变化的敏感性。

Combined microwave-optical pump-probe methods are emerging to study the quantum state of spin qubit centers and the charge dynamics in semiconductors. A major hindrance is the limited bandwidth of microwave irradiation/detection circuitry which could be overcome with the use of broadband coplanar waveguides (CPW). We present the development and performance characterization of two spectrometers: an optically detected magnetic resonance spectrometer (ODMR) and a microwave detected photoconductivity measurement. In the first method light serves as detection and microwaves excite the investigated medium, while in the second the roles are interchanged. The performance is demonstrated by measuring ODMR maps on the nitrogen-vacancy center in diamond and time resolved photoconductivity in p-doped silicon. The results demonstrate both an efficient coupling of the microwave irradiation to the samples as well as an excellent sensitivity for minute changes in sample conductivity.

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