Cavity mode waves during terahertz radiation from rectangular BiSrCaCuO mesas
arXiv:1010.4924 · doi:10.1088/0953-8984/23/2/025701
Abstract
We re-examined the angular dependence of the radiation from the intrinsic Josephson junctions in rectangular mesas of BiSrCaCuO, in order to determine if the cavity mode part of the radiation arises from waves across the width or along the length of the mesas, associated with ``hot spots'' [Wang {\it et al.}, Phys. Rev. Lett. {\bf 105}, 057002 (2010)]. We derived analytic forms for the angular dependence expected in both cases for a general cavity mode in which the width of the mesa corresponds to an integer multiple of one-half the wavelength of the radiation. Assuming the coherent radiation from the Josephson current source and the cavity magnetic surface current density source combine incoherently, fits to the data of Kadowaki {\it et al.} [J. Phys. Soc. Jpn. {\bf 79}, 023703 (2010)] on a mesa with mean for both wave directions using two models for the incoherent combination were made, which correspond to standing and traveling waves, respectively. The results suggest that the combined output from the uniform Josephson current source plus a cavity wave forming along the rectangle length is equally probable as that of the combined output from the uniform Josephson current plus a cavity wave across the width. However, for mesas in which is integral, where is the index of the rectangular TM mode, it is shown that standing cavity mode waves along the length of the mesa do not radiate in the plane perpendicular to the length of the mesa, suggesting experiments on such mesas could help to resolve the question.
11 pages 9 figures, submitted to J. Phys.: Condens. Matter
References in corpus (6)
- Hot spots and waves in Bi2Sr2CaCu2O8 intrinsic Josephson junction stacks -a study by Low Temperature Scanning Laser Microscopy
- Possible Dynamic States in Inductively Coupled Intrinsic Josephson Junctions of Layered High- Superconductors
- Mechanism of Terahertz Electromagnetic Wave Emission from Intrinsic Josephson Junctions
- Computer Simulation on Terahertz Emission from Intrinsic Josephson Junctions of High-T_c Superconductors
- Three-Dimensional Phase-Kink State in Thick Stack of Josephson Junctions and Terahertz Radiation
- Cavity phenomena in mesas of cuprate high- superconductors under voltage bias