TY - GEN
T1 - Multi-leads, Two-color, ZnCdSe/ZnCdMgSe Based Quantum Well Infrared Photodetectors
AU - Kaya, Yasin
AU - Ravikumar, Arvind
AU - Chen, Guopeng
AU - Tamargo, Maria C.
AU - Shen, Aidong
AU - Gmachl, Claire
N1 - Funding Information:
4. Conclusion In summary, we have experimentally demonstrated an independently controllable, two-color QWIP based on II-VI material system. FTIR measurements showed peak detection wavelengths at 4.8?µm and 7.6?µm at 80?. Peak responsivities of 11?/?and 7?/ and the dark current limited detectivities of 2.9108√/ and 2.7107√/were achieved at 80? for MWIR and LWIR, respectively. This work has been supported in part by MIRTHE (NSF-ERC), NSF-CENSES award and NSF AIR-TT. 5. References
Publisher Copyright:
© OSA 2016.
PY - 2016
Y1 - 2016
N2 - An independently controllable, two-color ZnCdSe/ZnCdMgSe quantum well infrared detector spanning 4.3 − 5.4 µm and 6.7 − 8.2 µm is experimentally demonstrated with a dark current limited detectivity of 2.9x108cm√Hz/W and 2.7x107cm√Hz/W at 80 K, respectively.
AB - An independently controllable, two-color ZnCdSe/ZnCdMgSe quantum well infrared detector spanning 4.3 − 5.4 µm and 6.7 − 8.2 µm is experimentally demonstrated with a dark current limited detectivity of 2.9x108cm√Hz/W and 2.7x107cm√Hz/W at 80 K, respectively.
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M3 - Conference contribution
AN - SCOPUS:85136582247
T3 - Optics InfoBase Conference Papers
BT - CLEO
PB - Optica Publishing Group (formerly OSA)
T2 - CLEO: Science and Innovations, SI 2016
Y2 - 5 June 2016 through 10 June 2016
ER -