Laser & Optoelectronics Progress, Volume. 56, Issue 20, 202403(2019)
Photodetection based on Surface Plasmon-Induced Hot Electrons
[6] Adinolfi V, Sargent E H. Photovoltage field-effect transistors[J]. Nature, 542, 324-327(2017).
[7] Lu X W, Jiang P, Bao X H. Phonon-enhanced photothermoelectric effect in SrTiO3 ultra-broadband photodetector[J]. Nature Communications, 10, 138(2019).
[15] Landsberg P T[M]. Recombination in semiconductors(2003).
[20] Barnes W L, Dereux A, Ebbesen T W. Surface plasmon subwavelength optics[J]. Nature, 424, 824-830(2003).
[30] Huang X Y, Li H B, Zhang C F et al. Efficient plasmon-hot electron conversion in Ag-CsPbBr3 hybrid nanocrystals[J]. Nature Communications, 10, 1163(2019).
[38] Tagliabue G, Jermyn A S, Sundararaman R et al. Quantifying the role of surface plasmon excitation and hot carrier transport in plasmonic devices[J]. Nature Communications, 9, 3394(2018).
[55] Ratchford D C, Dunkelberger A D, Vurgaftman I et al. Quantification of efficient plasmonic hot-electron injection in gold nanoparticle-TiO2 films[J]. Nano Letters, 17, 6047-6055(2017).
[57] Sakamoto M, Kawawaki T, Kimura M et al. Clear and transparent nanocrystals for infrared-responsive carrier transfer[J]. Nature Communications, 10, 406(2019).
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Yuanfang Yu, Zhenhua Ni. Photodetection based on Surface Plasmon-Induced Hot Electrons[J]. Laser & Optoelectronics Progress, 2019, 56(20): 202403
Category: Optics at Surfaces
Received: May. 31, 2019
Accepted: Jul. 31, 2019
Published Online: Oct. 22, 2019
The Author Email: Zhenhua Ni (zhni@seu.edu.cn)