Adam Klimont
University of Cambridge
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Publication
Featured researches published by Adam Klimont.
Applied Physics Letters | 2014
Yuan Ren; R. Wallis; Yash D. Shah; David S. Jessop; Riccardo Degl'Innocenti; Adam Klimont; Varun S. Kamboj; Harvey E. Beere; David A. Ritchie
A terahertz (THz) optical amplifier based on a 2.9 THz quantum cascade laser (QCL) structure has been demonstrated. By depositing an antireflective coating on the QCL facet, the laser mirror losses are enhanced to fully suppress the lasing action, creating a THz quantum cascade (QC) amplifier. Terahertz radiation amplification has been obtained, by coupling a separate multi-mode THz QCL of the same active region design to the QC amplifier. A bare cavity gain is achieved and shows excellent agreement with the lasing spectrum from the original QCL without the antireflective coating. Furthermore, a maximum optical gain of ∼30 dB with single-mode radiation output is demonstrated.
Optics Express | 2015
R. Wallis; R. Degli'Innocenti; David S. Jessop; Yuan Ren; Adam Klimont; Yash D. Shah; Oleg Mitrofanov; Carlos M. Bledt; Jeffrey E. Melzer; James A. Harrington; Harvey E. Beere; D. A. Ritchie
The growth in terahertz frequency applications utilising the quantum cascade laser is hampered by a lack of targeted power delivery solutions over large distances (>100 mm). Here we demonstrate the efficient coupling of double-metal quantum cascade lasers into flexible polystyrene lined hollow metallic waveguides via the use of a hollow copper waveguide integrated into the laser mounting block. Our approach exhibits low divergence, Gaussian-like emission, which is robust to misalignment error, at distances > 550 mm, with a coupling efficiency from the hollow copper waveguide into the flexible waveguide > 90%. We also demonstrate the ability to nitrogen purge the flexible waveguide, increasing the power transmission by up to 20% at 2.85 THz, which paves the way for future fibre based terahertz sensing and spectroscopy applications.
conference on lasers and electro optics | 2015
Riccardo Degl'Innocenti; Yash D. Shah; R. Wallis; Adam Klimont; Yuan Ren; David S. Jessop; Harvey E. Beere; D. A. Ritchie
We present a quantum cascade laser emitting around 2.9 THz, based on a new hybrid plasmonic waveguide design. The resultant optical mode provides a performance commensurate with a metal-metal waveguide, while improving the far-field pattern.
Applied Physics Letters | 2015
Yuan Ren; R. Wallis; David S. Jessop; Riccardo Degl'Innocenti; Adam Klimont; Harvey E. Beere; D. A. Ritchie
arXiv: Optics | 2017
Adam Klimont; Riccardo Degl'Innocenti; Luca Masini; Yuqing Wu; Yash D. Shah; Yuan Ren; David S. Jessop; Alessandro Tredicucci; Harvey E. Beere; David A. Ritchie
conference on lasers and electro optics | 2016
Adam Klimont; Riccardo Degl'Innocenti; Luca Masini; Yash D. Shah; Yuan Ren; David S. Jessop; Alessandro Tredicucci; Harvey E. Beere; David A. Ritchie
Archive | 2016
Yuan Ren; R. Wallis; David S. Jessop; Riccardo Degl'innocenti; Adam Klimont; H. E. Beere; D. A. Ritchie
international conference on infrared, millimeter, and terahertz waves | 2015
R. Wallis; Yuan Ren; David S. Jessop; Riccardo Degl'Innocenti; Adam Klimont; Harvey E. Beere; David A. Ritchie
Archive | 2015
Yuan Ren; R. Wallis; Yash D. Shah; David S. Jessop; R. Degli'Innocenti; Adam Klimont; Varun S. Kamboj; Harvey E. Beere; D. A. Ritchie
Archive | 2015
R. Wallis; Riccardo Degl'Innocenti; David S. Jessop; Yuan Ren; Adam Klimont; Yash D. Shah; Oleg Mitrofanov; Carlos M. Bledt; Jeffrey E. Melzer; James A. Harrington; Harvey E. Beere; D. A. Ritchie