Chinese Journal of Lasers, Volume. 47, Issue 11, 1113002(2020)

Surface Plasmon Enhanced Silicon-Based Near-Infrared Photoconductive Detector On the Cover

Tang Jia, Li Jiaxiang, Chen Qin, and Wen Long*
Author Affiliations
  • Institute of Nanophotonics, Jinan University, Guangzhou, Guangdong 510632, China
  • show less
    References(26)

    [3] Yu Y F, Miao F, He J et al. Photodetecting and light-emitting devices based on two-dimensional materials[J]. Chinese Physics B, 26, 036801(2017).

    [10] Harame D L, Koester S J, Freeman G et al. The revolution in SiGe: impact on device electronics[J]. Applied Surface Science, 224, 9-17(2004).

    [11] Brongersma M L, Halas N J, Nordlander P. Plasmon-induced hot carrier science and technology[J]. Nature Nanotechnology, 10, 25-34(2015).

    [12] Yu Y F, Sun Y, Hu Z L et al. Fast photoelectric conversion in the near-infrared enabled by plasmon-induced hot-electron transfer[J]. Advanced Materials, 31, 1903829(2019).

    [13] Wang Y, Shen L, Wang Y et al. Hot electron-driven photocatalysis and transient absorption spectroscopy in plasmon resonant grating structures[J]. Faraday Discussions, 214, 325-339(2019).

    [14] Liu W K, Wang W Q, Guan Z Q et al. A plasmon modulated photothermoelectric photodetector in silicon nanostripes[J]. Nanoscale, 11, 4918-4924(2019).

    [16] Wen L, Chen Y F, Liu W W et al. Enhanced photoelectric and photothermal responses on silicon platform by plasmonic absorber and omni-Schottky junction[J]. Laser & Photonics Reviews, 11, 1700059(2017).

    [17] Ajiki Y, Kan T, Yahiro M et al. Silicon based near infrared photodetector using self-assembled organic crystalline nano-pillars[J]. Applied Physics Letters, 108, 151102(2016).

    [18] Wen L, Chen Y, Liang L et al. Hot electron harvesting via photoelectric ejection and photothermal heat relaxation in hotspots-enriched plasmonic/photonic disordered nanocomposites[J]. ACS Photonics, 5, 581-591(2018).

    [19] Yang Z, Liu M, Liang S H et al. Hybrid modes in plasmonic cavity array for enhanced hot-electron photodetection[J]. Optics Express, 25, 20268-20273(2017).

    [20] Goykhman I, Desiatov B, Khurgin J et al. Locally oxidized silicon surface-plasmon Schottky detector for telecom regime[J]. Nano Letters, 11, 2219-2224(2011).

    [21] Yakubovsky D I, Stebunov Y V, Kirtaev R V et al. Ultrathin and ultrasmooth gold films on monolayer MoS2[J]. Advanced Materials Interfaces, 6, 1900196(2019).

    [22] Rosenblatt G, Simkhovich B, Bartal G et al. Nonmodal plasmonics: controlling the forced optical response of nanostructures[J]. Physical Review X, 10, 011071(2020).

    [24] Li W, Valentine J. Harvesting the loss: surface plasmon-based hot electron photodetection[J]. Nanophotonics, 6, 177-191(2017).

    [25] Chen B. Structure optimization and temperature dependent characteristics study of SiC MSM ultraviolet detector Xi'an:[D]. Xidian University(2012).

    [26] Chen Y F. Hot electron infrared detector based on surface plasmon effect[D]. Shanghai: Shanghai University(2017).

    Tools

    Get Citation

    Copy Citation Text

    Tang Jia, Li Jiaxiang, Chen Qin, Wen Long. Surface Plasmon Enhanced Silicon-Based Near-Infrared Photoconductive Detector[J]. Chinese Journal of Lasers, 2020, 47(11): 1113002

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: micro and nano optics

    Received: May. 21, 2020

    Accepted: --

    Published Online: Oct. 23, 2020

    The Author Email: Long Wen (longwen@jnu.edu.cn)

    DOI:10.3788/CJL202047.1113002

    Topics