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  1. AU=Khoshakhlagh Arezou
  2. AU="Sofija Glamočlija"
  3. AU="Fleming, Sherry D"
  4. AU="Minkina, Tatiana M"
  5. AU="Fonseca, Danielle"
  6. AU="Maximilian, Carmen-Rodica"
  7. AU="Heuer, Lauren B"
  8. AU="Pan, Judy"
  9. AU="Doro, M."
  10. AU="Navarro-Zapata, Alfonso"
  11. AU="Martin, Emanuel H"
  12. AU="Biswas, Arnab"
  13. AU="Kurt Pfister"
  14. AU="Stefano Brignola"
  15. AU="Nierzwicki, Łukasz"
  16. AU="Benvin, Iva"
  17. AU="Sardesai, S. C."
  18. AU="Aldrees, Rana"

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  1. Artikel: Infrared imaging: a potential powerful tool for neuroimaging and neurodiagnostics.

    Khoshakhlagh, Arezou / Gunapala, Sarath D

    Neurophotonics

    2017  Band 4, Heft 1, Seite(n) 11014

    Abstract: Infrared (IR) imaging is used to detect the subtle changes in temperature needed to accurately detect and monitor disease. Technological advances have made IR a highly sensitive and reliable detection tool with strong potential in medical and ... ...

    Abstract Infrared (IR) imaging is used to detect the subtle changes in temperature needed to accurately detect and monitor disease. Technological advances have made IR a highly sensitive and reliable detection tool with strong potential in medical and neurophotonics applications. An overview of IR imaging specifically investigating quantum well IR detectors developed at Jet Propulsion Laboratory for a noninvasive, nonradiating imaging tool is provided, which could be applied for neuroscience and neurosurgery where it involves sensitive cellular temperature change.
    Sprache Englisch
    Erscheinungsdatum 2017-03-28
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ZDB-ID 2781943-7
    ISSN 2329-4248 ; 2329-423X
    ISSN (online) 2329-4248
    ISSN 2329-423X
    DOI 10.1117/1.NPh.4.1.011014
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel: InAs/InAsSb Type-II Strained-Layer Superlattice Infrared Photodetectors.

    Ting, David Z / Rafol, Sir B / Khoshakhlagh, Arezou / Soibel, Alexander / Keo, Sam A / Fisher, Anita M / Pepper, Brian J / Hill, Cory J / Gunapala, Sarath D

    Micromachines

    2020  Band 11, Heft 11

    Abstract: The InAs/InAsSb (Gallium-free) type-II strained-layer superlattice (T2SLS) has emerged in the last decade as a viable infrared detector material with a continuously adjustable band gap capable of accommodating detector cutoff wavelengths ranging from 4 ... ...

    Abstract The InAs/InAsSb (Gallium-free) type-II strained-layer superlattice (T2SLS) has emerged in the last decade as a viable infrared detector material with a continuously adjustable band gap capable of accommodating detector cutoff wavelengths ranging from 4 to 15 µm and beyond. When coupled with the unipolar barrier infrared detector architecture, the InAs/InAsSb T2SLS mid-wavelength infrared (MWIR) focal plane array (FPA) has demonstrated a significantly higher operating temperature than InSb FPA, a major incumbent technology. In this brief review paper, we describe the emergence of the InAs/InAsSb T2SLS infrared photodetector technology, point out its advantages and disadvantages, and survey its recent development.
    Sprache Englisch
    Erscheinungsdatum 2020-10-26
    Erscheinungsland Switzerland
    Dokumenttyp Journal Article ; Review
    ZDB-ID 2620864-7
    ISSN 2072-666X
    ISSN 2072-666X
    DOI 10.3390/mi11110958
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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