Journal of Infrared and Millimeter Waves, Volume. 44, Issue 3, 365(2025)

Photoelectric conversion of critically coupled quantum well devices in the strong coupling regime

Jian-Tao SONG1、*, Shu-Huan MA1, Chen-Xiao WANG1,2, Fan YANG1,2, Zhi-Jian CHEN1,2, and Bi-Mu YAO2
Author Affiliations
  • 1School of Physical Science and Technology,ShanghaiTech University,Shanghai 201210,China
  • 2State Key Laboratory of Infrared Physics,Shanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,China
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    References(28)

    [1] ZHANG X, ZOU C L, JIANG L et al. Cavity magnomechanics[J]. Science Advances, 2, e1601286(2016).

    [2] HAROCHE S, RAIMOND J M[M]. Exploring the Quantum: Atoms, Cavities, and Photons(2006).

    [3] ROSENCHER E, VINTER B[M]. Optoelectronics(2002).

    [4] WEINER J, HO P T[M]. Light-Matter Interaction: Fundamentals and applications (Volume 1)(2008).

    [5] SCULLY M O, SVIDZINSKY A A. The super of superradiance[J]. Science, 325, 1510-1511(2009).

    [6] VASANELLI A, TODOROV Y, SIRTORI C. Ultra-strong light–matter coupling and superradiance using dense electron gases[J]. Comptes Rendus Physique, 17, 861-873(2016).

    [7] TODOROV Y, SIRTORI C. Few-electron ultrastrong light-matter coupling in a quantum LC circuit[J]. Physical Review X, 4, 041031(2014).

    [8] THOMAS A. Tilting a ground-state reactivity landscape by vibrational strong coupling[J]. Science, 363, 615-619(2019).

    [9] GARCIA-VIDAL F J, CIUTI C, EBBESEN T W. Manipulating matter by strong coupling to vacuum fields[J]. Science, 373, eabd0336(2021).

    [10] ORGIU E. Conductivity in organic semiconductors hybridized with the vacuum field[J]. Nature Materials, 14, 1123-1129(2015).

    [11] HAGENMÜLLER D, SCHACHENMAYER J, SCHÜTZ S et al. Cavity-enhanced transport of charge[J]. Physical Review Letters, 119, 223601(2017).

    [12] DICKE R H. Coherence in spontaneous radiation processes[J]. Physical Review, 93, 99-110(1954).

    [13] VIGNERON P B. Quantum well infrared photodetectors operating in the strong light-matter coupling regime[J]. Applied Physics Letters, 114, 161103(2019).

    [14] GÜNTER G. Sub-cycle switch-on of ultrastrong light–matter interaction[J]. Nature, 458, 178-181(2009).

    [15] SHEN J, ZHU T, ZHOU J et al. High-discrimination circular polarization detection based on dielectric-metal-hybrid chiral metamirror integrated quantum well infrared photodetectors[J]. Sensors, 23, 168(2023).

    [16] WANG H, ZHEN H, LI S et al. Self-rolling and light-trapping in flexible quantum well–embedded nanomembranes for wide-angle infrared photodetectors[J]. Science Advances, 2, e1600027(2016).

    [17] JIN X Y, LI W W, LI T X et al. Enhanced absorption of infrared light for quantum wells in coupled pillar-cavity arrays[J]. Optics Express, 31, 7090-7102(2023).

    [18] ZANOTTO S. Perfect energy-feeding into strongly coupled systems and interferometric control of polariton absorption[J]. Nature Physics, 10, 830-834(2014).

    [19] SUN Y, TAN W, LI H Q et al. Experimental demonstration of a coherent perfect absorber with PT phase transition[J]. Physical Review Letters, 112, 143903(2014).

    [20] PENG B. Loss-induced suppression and revival of lasing[J]. Science, 346, 328-332(2014).

    [21] PISANI F, GACEMI D, VASANELLI A et al. Electronic transport driven by collective light-matter coupled states in a quantum device[J]. Nature Communications, 14, 3914(2023).

    [22] UNTERRAINER K, LIU H, CAPASSO F. Photon-assisted tunneling in semiconductor quantum structures[M]. Semiconductors and semimetals (Volume 66), 127-186(1999).

    [23] GIORGETTA F R. Quantum cascade detectors[J]. IEEE Journal of Quantum Electronics, 45, 1039-1052(2009).

    [24] WEBER E R, WILLARDSON R K, LIU H et al[M]. Intersubband Transitions in Quantum Wells: Physics and Device Applications(1999).

    [25] TODOROV Y, SIRTORI C. Intersubband polaritons in the electrical dipole gauge[J]. Physical Review B, 85, 045304(2012).

    [26] DELTEIL A, VASANELLI A, TODOROV Y et al. Charge-induced coherence between intersubband plasmons in a quantum structure[J]. Physical Review Letters, 109, 246808(2012).

    [27] SIRTORI C. Resonant tunneling in quantum cascade lasers[J]. IEEE Journal of Quantum Electronics, 34, 1722-1729(1998).

    [28] DELTEIL A. Charge-induced coherence between intersubband plasmons in a quantum structure[J]. Physical Review Letters, 109, 246808(2012).

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    Jian-Tao SONG, Shu-Huan MA, Chen-Xiao WANG, Fan YANG, Zhi-Jian CHEN, Bi-Mu YAO. Photoelectric conversion of critically coupled quantum well devices in the strong coupling regime[J]. Journal of Infrared and Millimeter Waves, 2025, 44(3): 365

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    Paper Information

    Category: Infrared Physics, Materials and Devices

    Received: Dec. 3, 2024

    Accepted: --

    Published Online: Jul. 9, 2025

    The Author Email: Jian-Tao SONG (songjt2024@shanghaitech.edu.cn)

    DOI:10.11972/j.issn.1001-9014.2025.03.006

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