Coupling of Surface Plasmon Polaritons and Hyperbolic Phonon Polaritons on the Near-Field Radiative Heat Transfer Between Multilayer Graphene/hBN Structures

被引:0
|
作者
Zhang, Jihong [1 ]
Liu, Haotuo [2 ]
Yang, Bing [3 ]
Yi, Zao [4 ]
Cai, Qilin [5 ]
Wu, Xiaohu [6 ]
机构
[1] Xian Univ Technol, Dept Elect Engn, Xian, Shaanxi, Peoples R China
[2] Harbin Univ Sci & Technol, Key Lab Adv Mfg & Intelligent Technol, Minist Educ, Harbin, Peoples R China
[3] Shandong Univ Technol, Ctr Adv Laser Mfg CALM, Sch Mech Engn, Zibo, Peoples R China
[4] Jishou Univ, Sch Chem & Chem Engn, Jishou, Peoples R China
[5] Soochow Univ, Soochow Inst Energy & Mat Innovat, Coll Energy, Suzhou 215006, Peoples R China
[6] Shandong Inst Adv Technol, Thermal Sci Res Ctr, Jinan 250100, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
Near-field radiative heat transfer; surface plasmon-phonon polaritons; hyperbolic plasmon-phonon polaritons; multilayer structure; vacuum layer; THERMAL-RADIATION; MAGNETIC-POLARITONS;
D O I
10.1080/15567265.2024.2315265
中图分类号
O414.1 [热力学];
学科分类号
摘要
Near-field radiative heat transfer (NFRHT) between multilayer graphene/hBN heterostructures has been demonstrated to exceed the blackbody limit due to the coupling mechanism of surface plasmon polaritons and hyperbolic phonon polaritons, opening the door to applications in thermal management, thermophotovoltaics, and nanoscale metrology. Recent studies have shown that adding vacuum layers within multilayer structures can effectively promote surface modes and thus enhance NFRHT. However, the influence of vacuum layers on NFRHT between multilayer graphene/hBN heterostructures has not been investigated. Moreover, the influence of vacuum layers on coupled resonance modes excited in multilayer structures is worth discussing. In this work, we study the NFRHT based on multilayer graphene/vacuum/hBN/vacuum structures. The results show that as the gap distance increases from 20 nm to 100 nm, the NFRHT of three-cell and six-cell configurations is enhanced, while that of unit-cell configuration is suppressed. The potential mechanism can be identified as the excitation of surface plasmon-phonon polaritons (SPPPs) and hyperbolic plasmon-phonon polaritons (HPPPs) in multilayer structures. The enhancement factor of the six-cell configurations is up to 4.82 when the gap distance is 80 nm. Moreover, the influences of the chemical potential of graphene and the layer thickness on the NFRHT are discussed. The interesting results in this work indicate the perspectives for future near-field research involving coupling of SPPPs and HPPPs, and shed new light on high-performance devices introducing vacuum layers based on near-field radiative heat transfer.
引用
收藏
页码:86 / 99
页数:14
相关论文
共 50 条
  • [1] Near-field radiative heat transfer between uniaxial hyperbolic media: Role of volume and surface phonon polaritons
    Wu, Xiaohu
    Fu, Ceji
    [J]. JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2021, 258
  • [2] Multiple surface plasmon polaritons mediated near-field radiative heat transfer between graphene/vacuum multilayers
    Zhang, Yong
    Wang, Cun-Hai
    Yi, Hong-Liang
    Tan, He-Ping
    [J]. JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2018, 221 : 138 - 146
  • [3] Enhanced near-field radiative heat transfer between a nanosphere and a hyperbolic metamaterial mediated by coupled surface phonon polaritons
    Bai, Yang
    Jiang, Yongyuan
    Liu, Linhua
    [J]. JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2015, 158 : 61 - 68
  • [4] Near-field radiative heat transfer between topological insulators via surface plasmon polaritons
    Liu, Ruiyi
    Ge, Lixin
    Wu, Biyuan
    Cui, Zheng
    Wu, Xiaohu
    [J]. ISCIENCE, 2021, 24 (12)
  • [5] Near-field radiative heat transfer enhancement via surface phonon polaritons coupling in thin films
    Francoeur, Mathieu
    Menguc, M. Pinar
    Vaillon, Rodolphe
    [J]. APPLIED PHYSICS LETTERS, 2008, 93 (04)
  • [6] Enhanced near-field radiative heat transfer between nanostructure emitter and GaSb absorber by surface plasmon polaritons and hyperbolic modes
    Li, Bowen
    Lu, Lu
    Zhang, Kun
    Zhou, Yulong
    Luo, Zixue
    Cheng, Qiang
    [J]. APPLIED PHYSICS LETTERS, 2024, 124 (06)
  • [7] Near-Field Radiative Heat Transfer between Dissimilar Materials Mediated by Coupled Surface Phonon- and Plasmon-Polaritons
    Tang, Lei
    DeSutter, John
    Francoeur, Mathieu
    [J]. ACS PHOTONICS, 2020, 7 (05): : 1304 - 1311
  • [8] Coupling polaritons in near-field radiative heat transfer between multilayer graphene/vacuum/α-MoO3/vacuum heterostructures
    Zhang, Jihong
    Wu, Xiaohu
    Hu, Yang
    Yang, Bing
    Liu, Haotuo
    Cai, Qilin
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2024, 26 (03) : 2101 - 2110
  • [9] Near-Field Radiative Heat Transfer between Black Phosphorus Sheets via Anisotropic Surface Plasmon Polaritons
    Zhang, Yong
    Yi, Hong-Liang
    Tan, He-Ping
    [J]. ACS PHOTONICS, 2018, 5 (09): : 3739 - 3747
  • [10] Enhanced near-field radiative heat transfer between corrugated metal plates: Role of spoof surface plasmon polaritons
    Dai, J.
    Dyakov, S. A.
    Yan, M.
    [J]. PHYSICAL REVIEW B, 2015, 92 (03)