微波辐射探测器用颗粒钼薄膜的直流输运和太赫兹电导率研究

Shilpam Sharma, A. Khandelwal, E. Amaladass, A. S, Ramjan Sk, J. J., A. Mani, M. K. Chattopadhyay
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引用次数: 1

摘要

研究了在正常和超导状态下,在非晶基体中嵌入纳米颗粒的直流磁控溅射颗粒钼薄膜的形态、输运和太赫兹光学性能。这些薄膜的超导转变温度远高于本体钼。利用太赫兹时域光谱技术研究了这些薄膜的光学性质。将它们的性质与现有用于研制辐射探测器的材料进行了比较。薄膜的电阻率在>100微欧姆-厘米范围内,是制作高灵敏度辐射探测器的理想选择。霍尔测量表明,空穴作为主要载流子存在,平均自由程和迁移率非常小。在正常状态下,薄膜是无序的坏金属,但在超导状态下,薄膜具有较大的超流密度和刚度。薄膜的正常状态和超导特性在微波、太赫兹和远红外频率范围的低温辐射探测器中有很大的应用前景。
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Studies on DC transport and terahertz conductivity of granular molybdenum thin films for microwave radiation detector applications
The morphological, transport and terahertz optical properties of DC magnetron sputtered granular molybdenum thin-films with nano-grains embedded in an amorphous matrix have been studied in the normal and superconducting states. The superconducting transition temperatures of these films are much higher than that of bulk molybdenum. The optical properties of these thin-films have been studied using terahertz time-domain spectroscopy. Their properties have been compared with the existing materials used for the development of radiation detectors. The resistivity of the films lies in >100 micro-Ohm-cm range which is ideal for making highly sensitive radiation detectors. The Hall measurements indicate the presence of holes as the dominant carriers with very small mean free path and mobility. In the normal state, the films are disordered bad metal but they have large superfluid density and stiffness in their superconducting state. The normal state and superconducting properties of the films are very promising for their use in cryogenic radiation detectors for microwave, terahertz, and far IR frequency ranges.
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