Showing posts with label superconducting terahertz sources. Show all posts
Showing posts with label superconducting terahertz sources. Show all posts

Thursday, March 17, 2016

Abstract-Applications using high-Tc superconducting terahertz emitters


http://www.nature.com/articles/srep23178

Using recently-developed THz emitters constructed from single crystals of the high-Tc superconductor Bi2Sr2CaCu2O8+δ, we performed three prototype tests of the devices to demonstrate their unique characteristic properties for various practical applications. The first is a compact and simple transmission type of THz imaging system using a Stirling cryocooler. The second is a high-resolution Michelson interferometer used as a phase-sensitive reflection-type imaging system. The third is a system with precise temperature control to measure the liquid absorption coefficient. The detailed characteristics of these systems are discussed.

Tuesday, December 9, 2014

Abstract-Imaging of local temperature distributions in mesas of high-Tc superconducting terahertz sources



M Tsujimoto, H Kambara, Y Maeda, Y Yoshioka, Y Nakagawa and I Kakeya
http://iopscience.iop.org/1742-6596/568/2/022048
Department of Electronic Science and Engineering, Kyoto University, Kyoto, Japan 

Stacks of intrinsic Josephson junctions in high-Tc superconductors are a promising source of intense, continuous, and monochromatic terahertz waves. In this paer, we establish a fluorescence-based temperature imaging system to directly image the surface temperature on a Bi2Sr2CaCu2O8+δ mesa sample. Intense terahertz emissions are observed in both high- and low-bias regimes, where the mesa voltage satisfies the cavity resonance condition. In the high- bias regime, the temperature distributions are shown to be inhomogeneous with a considerable temperature rise. In contrast, in the low-bias regime, the distributions are rather uniform and the local temperature is close to the bath temperature over the entire sample.