通过对法布里-珀罗谐振器的理论分析,说明这种谐振器的基模电磁场分布具有"高斯光束"的形式,在其束腰位置近似为横电磁波,在亚毫米波频段应用于研究超导交流约瑟夫森效应具有优势。应用CST Microwave Studio 2006对其进行仿真...通过对法布里-珀罗谐振器的理论分析,说明这种谐振器的基模电磁场分布具有"高斯光束"的形式,在其束腰位置近似为横电磁波,在亚毫米波频段应用于研究超导交流约瑟夫森效应具有优势。应用CST Microwave Studio 2006对其进行仿真,验证了上述特点并得到谐振模式,谐振器反射镜尺寸,反射镜曲率以及耦合方式对工作状态的影响。适当调整以上参数,可以优化腔内能量的聚集度,从而使谐振器很好地应用于观测约瑟夫森结的夏皮罗台阶。展开更多
To achieve high quality factor and high-sensitivity refractive index sensor,a slot micro-ring resonator(MRR)based on asymmetric Fabry-Perot(FP)cavity was proposed.The structure consisted of a pair of elliptical holes ...To achieve high quality factor and high-sensitivity refractive index sensor,a slot micro-ring resonator(MRR)based on asymmetric Fabry-Perot(FP)cavity was proposed.The structure consisted of a pair of elliptical holes to form an FP cavity and a microring resonator.The two different optical modes generated by the micro-ring resonator were destructively interfered to form a Fano line shape,which improved the system sensitivity while obtaining a higher quality factor and extinction ratio.The transmission principle of the structure was analyzed by the transfer matrix method.The transmission spectrum and mode field distribution of the proposed structure were simulated by the finite difference time domain(FDTD)method,and the key structural parameters affecting the Fano line shape in the device were optimized.The simulation results show that the quality factor of the device reached 22037.1,and the extinction ratio was 23.9 dB.By analyzing the refractive index sensing characteristics,the sensitivity of the structure was 354 nm·RIU−1,and the detection limit of the sensitivity was 2×10−4 RIU.Thus,the proposed compact asymmetric FP cavity slot micro-ring resonator has obvious advantages in sensing applications owing to its excellent performance.展开更多
文摘通过对法布里-珀罗谐振器的理论分析,说明这种谐振器的基模电磁场分布具有"高斯光束"的形式,在其束腰位置近似为横电磁波,在亚毫米波频段应用于研究超导交流约瑟夫森效应具有优势。应用CST Microwave Studio 2006对其进行仿真,验证了上述特点并得到谐振模式,谐振器反射镜尺寸,反射镜曲率以及耦合方式对工作状态的影响。适当调整以上参数,可以优化腔内能量的聚集度,从而使谐振器很好地应用于观测约瑟夫森结的夏皮罗台阶。
基金supported by Natural Science Foundation of Gansu Province(No.22JR5RA320).
文摘To achieve high quality factor and high-sensitivity refractive index sensor,a slot micro-ring resonator(MRR)based on asymmetric Fabry-Perot(FP)cavity was proposed.The structure consisted of a pair of elliptical holes to form an FP cavity and a microring resonator.The two different optical modes generated by the micro-ring resonator were destructively interfered to form a Fano line shape,which improved the system sensitivity while obtaining a higher quality factor and extinction ratio.The transmission principle of the structure was analyzed by the transfer matrix method.The transmission spectrum and mode field distribution of the proposed structure were simulated by the finite difference time domain(FDTD)method,and the key structural parameters affecting the Fano line shape in the device were optimized.The simulation results show that the quality factor of the device reached 22037.1,and the extinction ratio was 23.9 dB.By analyzing the refractive index sensing characteristics,the sensitivity of the structure was 354 nm·RIU−1,and the detection limit of the sensitivity was 2×10−4 RIU.Thus,the proposed compact asymmetric FP cavity slot micro-ring resonator has obvious advantages in sensing applications owing to its excellent performance.