T2SL Digital Focal Plane Arrays for Earth Remote Sensing Applications

被引:0
|
作者
Gunapala, Sarath [1 ]
Rafol, Sir [1 ]
Ting, David [1 ]
Soibel, Alexander [1 ]
Khoshakhlagh, Arezou [1 ]
Keo, Sam [1 ]
Pepper, Brian [1 ]
Fisher, Anita [1 ]
Luong, Edward [1 ]
Hill, Cory [1 ]
Choi, Kwong-Kit [2 ]
D'Souza, Arvind [3 ]
Masterjohn, Christopher [3 ]
Babu, Sachidananda [4 ]
Ghuman, Parminder [4 ]
机构
[1] CALTECH, Jet Prop Lab, Ctr Infrared Photodetectors, 4800 Oak Grove Dr, Pasadena, CA 91109 USA
[2] NASA, Goddard Space Flight Ctr, Greenbelt, MD USA
[3] DRS Network & Imaging Syst Inc, Cypress, CA USA
[4] NASA, Earth Sci Technol Off, Greenbelt, MD USA
基金
美国国家航空航天局;
关键词
type-II superlattice; infrared detector; quantum efficiency; digital; focal plane array;
D O I
10.1117/12.2522145
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
Long-wavelength infrared (LWIR) focal plane arrays (FPAs) needed for Earth Science imaging, spectral imaging, and sounding applications have always been among the most challenging in infrared photodetector technology due to the rigorous material growth, device design and fabrication demands. Future small satellite missions will present even more challenges for LWIR FPAs, as operating temperature must be increased so that cooler (and radiator) volume, mass, and power can be reduced. To address this critical need, we are working on following three technologies. 1) Type-II superlattice (T2SL) barrier infrared detector (BIRD), which combines the high operability, spatial uniformity, temporal stability, scalability, producibility, and affordability advantages of the quantum well infrared photodetector (QWIP) FPA with the better quantum efficiency and dark current characteristics. A mid-wavelength infrared (MWIR) T2SL BIRD FPA is a key demonstration technology in the (6U) CubeSat Infrared Atmospheric Sounder (CIRAS) funded under the ESTO InVEST Program. A LWIR T2SL BIRD FPA is also being developed under the ESTO SLI-T Program for future thermal infrared (TIR) land imaging needs. 2) The resonator pixel technology, which uses nanophotonics light trapping techniques to achieve strong absorption in a small detector absorber volume, thereby enabling enhanced QE and/or reduced dark current. 3) High dynamic range 3D Readout IC (3D-ROIC), which integrates a digital reset counter with a conventional analog ROIC to provide a much higher effective well capacity than previously achievable. The resulting longer integration times are especially beneficial for high flux/dark current LWIR applications as they can improve signal-to-noise ratio and/or increase the operating temperature. By combining the aforementioned technologies, this project seeks to demonstrate a cost-effective, high-performance LWIR FPA technology with significantly higher operating temperature and sensitivity than previously attainable, and with the flexibility to meet a variety of Earth Science TIR measurement needs, particularly the special requirements of small satellite missions.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] T2SL LWIR Digital Focal Plane Arrays for Earth Remote Sensing Applications
    Gunapala, Sarath
    Rafol, Sir
    Ting, David
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Luong, Edward
    Hill, Cory
    Choi, Kwong-Kit
    D'Souza, Arvind
    Masterjohn, Christopher
    2019 IEEE RESEARCH AND APPLICATIONS OF PHOTONICS IN DEFENSE CONFERENCE (RAPID), 2019,
  • [2] T2SL Meta-Surfaced Digital Focal Plane Arrays for Earth Remote Sensing Applications
    Gunapala, Sarath
    Rafol
    Ting, David
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Hill, Cory
    Choi, Kwong-Kit
    D'Souza, Arvind
    Masterjohn, Christopher
    Babu, Sachidananda
    Ghuman, Parminder
    INFRARED SENSORS, DEVICES, AND APPLICATIONS IX, 2019, 11129
  • [3] High operating temperature T2SL digital focal plane arrays for earth remote sensing instruments
    Gunapala, Sarath D.
    Ting, David
    Rafol, Sir
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Hill, Cory
    Wenger, Tobias
    Pagano, Thomas
    Kelly, Michael
    Baker, Justin
    David, Christopher
    Lucey, Paul
    Wright, Robert
    Nunes, Miguel A.
    Flynn, Luke
    Babu, Sachidananda
    Ghuman, Parminder
    INFRARED TECHNOLOGY AND APPLICATIONS XLVII, 2021, 11741
  • [4] Antimonides T2SL Mid-Wave and Long-Wave Infrared Focal Plane Arrays for Earth Remote Sensing Applications
    Gunapala, Sarath
    Ting, David
    Rafol, Sir
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Hill, Cory
    Pagano, Thomas
    Lucey, Paul
    Wright, Robert
    Nunes, Miguel
    Flynn, Luke
    Babu, Sachidananda
    Ghuman, Parminder
    QUANTUM SENSING AND NANO ELECTRONICS AND PHOTONICS XVII, 2020, 11288
  • [5] Infrared Digital Focal Plane Arrays for Earth Remote Sensing Applications
    Gunapala, Sarath
    Rafol, Sir
    Ting, David
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Luong, Edward
    Hill, Cory
    Choi, Kwong-Kit
    D'Souza, Arvind
    Masterjohn, Christopher
    Babu, Sachidananda
    Ghuman, Parminder
    2019 IEEE PHOTONICS CONFERENCE (IPC), 2019,
  • [6] T2SL Focal Planes for Compact Remote Sensing Instruments
    Gunapala, Sarath
    Ting, David
    Rafol, Sir
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Hill, Cory
    Luong, Edward
    Pagano, Thomas
    Lucey, Paul
    Wright, Robert
    Nunes, Miguel
    Flynn, Luke
    Babu, Sachidananda
    Ghuman, Parminder
    SENSORS, SYSTEMS, AND NEXT-GENERATION SATELLITES XXIV, 2020, 11530
  • [7] T2SL Focal Planes for Compact Remote Sensing Instruments
    Gunapala, Sarath
    Ting, David
    Rafol, Sir
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Hill, Cory
    Wenger, Tobias
    Pagano, Thomas
    Choi, Kwong-Kit
    Lucey, Paul
    Wright, Robert
    Nunes, Miguel
    Flynn, Luke
    Babu, Sachidananda
    Ghuman, Parminder
    IMAGE SENSING TECHNOLOGIES: MATERIALS, DEVICES, SYSTEMS, AND APPLICATIONS VIII, 2021, 11723
  • [8] Long-Wavelength Infrared Digital Focal Plane Arrays for Earth Remote Sensing Applications
    Gunapala, Sarath
    Rafol, Sir
    Ting, David
    Soibel, Alexander
    Khoshakhlagh, Arezou
    Keo, Sam
    Pepper, Brian
    Fisher, Anita
    Luong, Edward
    Hill, Cory
    D'Souza, Arvind
    Masterjohn, Christopher
    Babu, Sachidananda
    Ghuman, Parminder
    2019 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM (IGARSS 2019), 2019, : 8856 - 8859
  • [9] MTF and FPN measurements to evaluate midwave infrared T2SL focal plane arrays
    Nghiem, Jean
    Jaeck, Julien
    Giard, Edouard
    Caes, Marcel
    Rodriguez, Jean-Baptiste
    Christol, Philippe
    Haidar, Riad
    Costard, Eric
    Ribet-Mohamed, Isabelle
    QUANTUM SENSING AND NANO ELECTRONICS AND PHOTONICS XIV, 2017, 10111
  • [10] Temporal stability and correctability of a MWIR T2SL focal plane array
    Ribet-Mohamed, I.
    Nghiem, J.
    Caes, M.
    Guenin, M.
    Hoglund, L.
    Costard, E.
    Rodriguez, J. B.
    Christol, P.
    INFRARED PHYSICS & TECHNOLOGY, 2019, 96 : 145 - 150