Guide Detectivity 2

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Finally, a good voltage tunability of the photoresponse is also demonstrated. These findings are significant to the deep understanding on the integration of layered TMDs with conventional semiconductors, and they provide an attractive methodology to develop layered TMDs in a multi-junction system. Interfaces , 7 , 48 , View Author Information. Cite this: ACS Appl. Article Views Altmetric -. Citations Supporting Information.


Cited By. This article is cited by 41 publications. The Journal of Physical Chemistry C , 36 , DOI: Khushbu R.

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Chauhan, Dipal B. Functional nanocrystalline TiO2 thin films for UV enhanced highly responsive silicon photodetectors. Journal of Alloys and Compounds , , Broadband photodetectors based on 2D group IVA metal chalcogenides semiconductors.

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Applied Materials Today , 15 , Oxygen-incorporated and layer-by-layer stacked WS 2 nanosheets for broadband, self-driven and fast-response photodetection. Nanoscale , 11 14 , Journal of Materials Chemistry C , 6 47 , Tito E. Huber, Scott D. Johnson, John H. Belk, Jeff H. Hunt, Khosro Shirvani. Ye Tian, Johann Toudert.

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    Detectivity studies of SMD-packaged ZnSSe and ZnMgS UV detectors

    Structural effect of Ni-Cu catalysts for graphene growth by pulsed laser deposition. Thin Solid Films , , Nan Guo. Ibrahima Ka, Luis F. Gerlein, Ivy M.

    Asuo, Riad Nechache, Sylvain G. An ultra-broadband perovskite-PbS quantum dot sensitized carbon nanotube photodetector.


    Nanoscale , 10 19 , Ling, T. Guo, W. Lu, X. Li, L. You will need a known light source with known irradiance at a given standoff distance. The incoming light source will be chopped at a certain frequency, and then each wavelength will be integrated over a given time constant over a given number of frames. This is done either directly by the instrument, or done as post-processing.


    Detectivity studies of SMD-packaged ZnSSe and ZnMgS UV detectors | SpringerLink

    Next, emitting area must be converted into a projected area and the solid angle ; this product is often called the etendue. From this metric noise-equivalent power can be computed by taking the noise level over the responsivity. Now, the detectivity is simply the noise-equivalent power normalized to the bandwidth and detector area. From Wikipedia, the free encyclopedia. This article may rely excessively on sources too closely associated with the subject , potentially preventing the article from being verifiable and neutral.

    Please help improve it by replacing them with more appropriate citations to reliable, independent, third-party sources.