用YBa2Cu3O7-δ薄膜在Si衬底上构建法布里-珀罗谐振器

A. Kumar, Vladimir A. Boychev, Zhuomin M. Zhang, D. Tanner
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摘要

法布里-珀罗(F-P)谐振器是由两个超导YBa2Cu3O7-δ (YBCO)薄膜制成的,薄膜之间用间隔层隔开。每层膜厚度为35 nm,沉积在厚度约为0.2 mm的Si衬底上。采用慢扫描迈克尔逊干涉仪测量了谐振器在10 ~ 300 K温度范围内10 ~ 90 cm−1远红外频率区域的透射率。测量结果表明,在正常状态下,峰值(或谐振)透过率随温度的升高而降低,而在超导状态下,峰值透过率随温度的降低而升高。利用先前得到的各个反射器的特性计算了谐振器的透射率。在考虑部分相干效应的情况下,计算得到的透射率与实验结果吻合较好。在考虑干扰效应的基础上,通过优化分析,预测了最大可能的谐振透过率。研究了YBCO薄膜厚度对透射峰的影响,发现随着薄膜厚度的增加,共振透射率降低,但精细度增加。本研究将有助于改进未来基于HTSC薄膜的F-P谐振器的设计。
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Fabry-Perot Resonators Built With YBa2Cu3O7-δ Films on Si Substrates
Fabry-Perot (F-P) resonators were built from two superconductive YBa2Cu3O7-δ (YBCO) films separated by a spacer. Each film of 35 nm thickness was deposited on a Si substrate ≈0.2 mm thick. A slow-scan Michelson interferometer was employed to measure the transmittance of the resonator in the far-infrared frequency region from 10 to 90 cm−1 at temperatures between 10 and 300 K. Measurements showed that in the normal state the peak (or resonant) transmittance decreases with temperature, whereas in the superconducting state it can increase with decreasing temperature. The transmittance of the resonator was calculated using properties of individual reflectors obtained previously. When the effect of partial coherence is taken into consideration, the calculated transmittance is in good agreement with the experiments. Furthermore, the maximum possible resonant transmittance was predicted based on an optimization analysis considering the interference effects. The effect of the YBCO film thickness on the transmittance peaks was also studied, showing that the resonant transmittance decreases but the finesse increases as the film thickness is increased. This study should help improve the future design of F-P resonators based on HTSC thin films.
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