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Room temperature operation of photonic-crystal distributed-feedback quantum cascade lasers with single longitudinal and lateral mode performance

Authors
  • quan-yong), (lu
  • wan-hong), wh guo (guo
  • wei), w zhang (zhang
  • li-jun), lj wang (wang
  • jun-qi), jq liu (liu
  • lu), (li
  • feng-qi), fq liu (liu
  • zhan-guo), zg wang (wang
Publication Date
Jan 01, 2010
Source
Knowledge Repository of SEMI,CAS
Keywords
License
Unknown
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Abstract

We demonstrate room temperature operation of photonic-crystal distributed-feedback quantum cascade lasers emitting at 4.7 mu m. A rectangular photonic crystal lattice perpendicular to the cleaved facet was defined using holographic lithography. The anticrossing of the index- and Bragg-guided dispersions of rectangular lattice forms the band-edge mode with extended mode volume and reduced group velocity. Utilizing this coupling mechanism, single mode operation with a near-diffractive-limited divergence angle of 12 degrees is obtained for 33 mu m wide devices in a temperature range of 85-300 K. The reduced threshold current densities and improved heat dissipation management contribute to the realization of devices' room temperature operation.

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