Scinovex
articleTop 10% cited

Transition metal-doped zinc chalcogenides: spectroscopy and laser demonstration of a new class of gain media

IEEE Journal of Quantum Electronics · 1996 · Vol. 32(6) · pp. 885–895
Laura D. DeLoachRalph H. PageG.D. WilkeSheila PayneW.F. Krupke

Abstract

The absorption and emission properties of transition metal (TM)-doped zinc chalcogenides have been investigated to understand their potential application as room-temperature, mid-infrared tunable laser media. Crystals of ZnS, ZnSe, and ZnTe, individually doped with Cr/sup 2+/, Co/sup 2+/, Ni/sup 2+/, or Fe/sup 2+/ have been evaluated. The absorption and emission properties are presented and discussed in terms of the energy levels from which they arise. The absorption spectra of the crystals studied exhibit strong bands between 1.4 and 2.0 /spl mu/m which overlap with the output of strained-layer InGaAs diodes. The room-temperature emission spectra reveal wide-band emissions from 2-3 /spl mu/m for Cr and from 2.8-4.0 /spl mu/m for Co, Cr luminesces strongly at room temperature; Co exhibits significant losses from nonradiative decay at temperatures above 200 K, and Ni and Fe only luminesce at low temperatures, Cr/sup 2+/ is estimated to have the highest quantum yield at room temperature among the media investigated with values of /spl sim/75-100%. Laser demonstrations of Cr:ZnS and Cr:ZnSe have been performed in a laser-pumped laser cavity with a Co:MgF/sub 2/ pump laser. The output of both lasers were determined to peak at wavelengths near 2.35 /spl mu/m, and both lasers demonstrated a maximum slope efficiency of approximately 20%. Based on these initial results, the Cr/sup 2+/ ion is predicted to be a highly favorable laser ion for the mid-IR when doped into the zinc chalcogenides; Co/sup 2+/ may also serve usefully, but laser demonstrations yet remain to be performed.

Semiconductor Lasers and Optical DevicesSolid State Laser TechnologiesPhotonic and Optical DevicesLaserMaterials scienceDopingAnalytical Chemistry (journal)Absorption (acoustics)Absorption spectroscopySpectroscopyEmission spectrumPhotoluminescenceDiode

Funding

  • Lawrence Livermore National Laboratory
Citations
600
FWCI
10.95
field-weighted impact
References
31
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Transition metal-doped zinc chalcogenides: spectroscopy and laser demonstration of a new class of gain media · Scinovex