4.6 Article

Near Unity Absorption in Nanocrystal Based Short Wave Infrared Photodetectors Using Guided Mode Resonators

期刊

ACS PHOTONICS
卷 6, 期 10, 页码 2553-2561

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsphotonics.9b01015

关键词

nanocrystals; short wave infrared; infrared detection; plasmonic resonance; PbS; HgTe; guided mode resonance

资金

  1. ERC [756225]
  2. Region Ile-de-France
  3. French state funds [ANR-11-IDEX-0004-02]
  4. IPER-Nano2, Nanodose, Copin, Frontal, Graskop
  5. Chinese Scholar Council
  6. l'Agence Innovation Defense
  7. European Research Council (ERC) [756225] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Nanocrystals appear as versatile building blocks for the design of low-cost optoelectronic devices. The design of infrared sensors based on nanocrystals is currently facing a key limitation: the short carrier diffusion length resulting from hopping transport makes that only a limited part of the incident light is absorbed. In order to enhance the device absorption, we use guided mode resonance (GMR). The method appears to be quite versatile and is applied to both PbS and HgTe nanocrystals presenting, respectively, cutoff wavelengths at 1.7 and 2.6 mu m. The designed electrodes present a large enhancement of material responsivity by a factor of approximate to 250, reaching an external quantum efficiency of 86% for PbS and 340% for HgTe. This increase of the response can be deconvoluted in a factor of 3 for the enhancement of the absorption and a factor of 80 for the photocurrent gain. This method can also be suited to finely tune the cutoff wavelength of the material thanks to geometrical parameters at the device level. The obtained devices are now only limited by the material noise.

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