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      Terahertz ambipolar dual-wavelength quantum cascade laser.

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          Abstract

          Terahertz frequency quantum cascade lasers (THz QCLs) are compact solid-state sources of terahertz radiation that were first demonstrated in 2002. They have a broad range of potential applications ranging from gas sensing and non-destructive testing, through to security and medical imaging, with many polycrystalline compounds having distinct fingerprint spectra in the terahertz frequency range. In this article, we demonstrate an electrically-switchable dual-wavelength THz QCL which will enable spectroscopic information to be obtained within a THz QCL-based imaging system. The device uses the same active region for both emission wavelengths: in forward bias, the laser emits at 2.3 THz; in reverse bias, it emits at 4 THz. The corresponding threshold current densities are 490 A/cm(2) and 330 A/cm(2), respectively, with maximum operating temperatures of 98K and 120 K.

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          Author and article information

          Journal
          Opt Express
          Optics express
          The Optical Society
          1094-4087
          1094-4087
          Oct 26 2009
          : 17
          : 22
          Affiliations
          [1 ] Institute of Microwaves and Photonics, School of Electronic and Electrical Engineering, University of Leeds, Leeds LS2 9JT, United Kingdom. l.j.m.lever@leeds.ac.uk
          Article
          187206
          10.1364/OE.17.019926
          19997216
          d3ad35b5-8814-41f9-9d86-ddd18c2320a9
          History

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