High operating temperature nBn detector with monolithically integrated microlens

Sarath D. Gunapala, David Z. Ting, Alexander Soibel, Cory J. Hill, D. Lubyshev, J. M. Fastenau, Amy W. K. Liu, Sam A. Keo, Anita M. Fisher, Edward M. Luong, Yueming Qiu
2018-01-22

SCID:  54.1/zatc296p
We demonstrate an InAsSb nBn detector monolithically integrated with a microlens fabricated on the back side of the detector. The increase in the optical collection area of the detector resulted in a five-fold enhancement of the responsivity to Rp = 5.5 A/W. The responsivity increases further to Rp = 8.5 A/W with an antireflection coating. These 4.5 μm cut-off wavelength antireflection coated detectors with microlenses exhibited a detectivity of D* (λ) = 2.7 × 1010 cmHz0.5/W at T = 250 K, which can be reached easily with a single-stage thermoelectric cooler or with a passive radiator in the space environment. This represents a 25 K increase in the operating temperature of these devices compared to the uncoated detectors without an integrated microlens.
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2018-01-22
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Sarath D. Gunapala
David Z. Ting
Alexander Soibel
Cory J. Hill
D. Lubyshev
J. M. Fastenau
Amy W. K. Liu
Sam A. Keo
Anita M. Fisher
Edward M. Luong
Yueming Qiu
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