Showing posts with label Yacine Halioua. Show all posts
Showing posts with label Yacine Halioua. Show all posts

Friday, March 6, 2015

Abstract-Phase-locked arrays of surface-emitting graded-photonic-heterostructure terahertz semiconductor lasers



Phase-locked arrays of surface-emitting graded-photonic-heterostructure terahertz semiconductor lasers

Yacine Halioua, Gangyi Xu, Souad Moumdji, Lianhe Li, Jingxuan Zhu, Edmund H. Linfield, A.Giles Davies, Harvey E. Beere, David A. Ritchie, and Raffaele Colombelli  »View Author Affiliations
http://www.opticsinfobase.org/oe/abstract.cfm?uri=oe-23-5-6915
Optics Express, Vol. 23, Issue 5, pp. 6915-6923 (2015)
http://dx.doi.org/10.1364/OE.23.006915

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We have demonstrated that a hybrid laser array, combining graded-photonic-heterostructure terahertz semiconductor lasers with a ring resonator, allows the relative phase (either symmetric or anti-symmetric) between the sources to be fixed by design. We have successfully phase-locked up to five separate lasers. Compared with a single device, we achieved a clear narrowing of the output beam profile.
© 2015 Optical Society of America

Tuesday, March 4, 2014

Abstract-Surface-emitting terahertz quantum cascade lasers with continuous-wave power in the tens of milliwatt range



We demonstrate efficient surface-emitting terahertz frequency quantum cascade lasers with continuous wave output powers of 20–25 mW at 15 K and maximum operating temperatures of 80–85 K. The devices employ a resonant-phonon depopulation active region design with injector, and surface emission is realized using resonators based on graded photonicheterostructures (GPHs). GPHs can be regarded as energy wells for photons and have recently been implemented through grading the period of the photonic structure. In this paper, we show that it is possible to keep the period constant and grade instead the lateral metal coverage across the GPH. This strategy ensures spectrally single-mode operation across the whole laser dynamic range and represents an additional degree of freedom in the design of confining potentials for photons.