THz plasmonics and electronics in germanene nanostrips

被引:0
|
作者
Talia Tene [1 ]
Marco Guevara [2 ]
Gabriela Tubon-Usca [3 ]
Oswaldo Villacrés Cáceres [4 ]
Gabriel Moreano [5 ]
Cristian Vacacela Gomez [6 ]
Stefano Bellucci [6 ]
机构
[1] Department of Chemistry,Universidad Técnica Particular de Loja  2. UNICARIBE Research Center, University of Calabria  3. Grupo de Investigación
[2] INFN-Laboratori Nazionali di Frascati
关键词
D O I
暂无
中图分类号
O53 [等离子体物理学]; O441.4 [电磁波与电磁场];
学科分类号
070204 ; 0809 ;
摘要
Germanene nanostrips(GeNSs) have garnered significant attention in modern semiconductor technology due to their exceptional physical characteristics, positioning them as promising candidates for a wide range of applications. GeNSs exhibit a two-dimensional(buckled) honeycomb-like lattice, which is similar to germanene but with controllable bandgaps. The modeling of GeNSs is essential for developing appropriate synthesis methods as it enables understanding and controlling the growth process of these systems. Indeed, one can adjust the strip width, which in turn can tune the bandgap and plasmonic response of the material to meet specific device requirements. In this study, the objective is to investigate the electronic behavior and THz plasmon features of GeNSs(≥100 nm wide). A semi-analytical model based on the charge-carrier velocity of freestanding germanene is utilized for this purpose. The charge-carrier velocity of freestanding germanene is determined through the GW approximation(vF= 0.702 × 106m·s-1). Within the width range of 100 to 500 nm, GeNSs exhibit narrow bandgaps, typically measuring only a few meV. Specifically, upon analysis, it was found that the bandgaps of the investigated GeNSs ranged√between 29 and 6 meV. As well, these nanostrips exhibit q1/2-like plasmon dispersions, with their connected plasmonic frequency(≤30 THz) capable of being manipulated by varying parameters such as strip width, excitation plasmon angle, and sample quality. These manipulations can lead to frequency variations, either increasing or decreasing, as well as shifts towards larger momentum values. The outcomes of our study serve as a foundational motivation for future experiments, and further confirmation is needed to validate the reported results.
引用
收藏
页码:31 / 43
页数:13
相关论文
共 50 条
  • [1] THz plasmonics and electronics in germanene nanostrips
    Tene, Talia
    Guevara, Marco
    Tubon-Usca, Gabriela
    Caceres, Oswaldo Villacres
    Moreano, Gabriel
    Gomez, Cristian Vacacela
    Bellucci, Stefano
    [J]. JOURNAL OF SEMICONDUCTORS, 2023, 44 (10)
  • [2] THz plasmonics and electronics in germanene nanostrips
    Talia Tene
    Marco Guevara
    Gabriela TubonUsca
    Oswaldo Villacrs Cceres
    Gabriel Moreano
    Cristian Vacacela Gomez
    Stefano Bellucci
    [J]. Journal of Semiconductors., 2023, 44 (10) - 43
  • [3] Dataset for Electronics and Plasmonics in Graphene, Silicene, and Germanene Nanostrips
    Tene, Talia
    Garcia, Nataly Bonilla
    Paguay, Miguel Angel Saez
    Vera, John
    Guevara, Marco
    Gomez, Cristian Vacacela
    Bellucci, Stefano
    [J]. DATA, 2024, 9 (02)
  • [4] Modeling semiconducting silicene nanostrips: electronics and THz plasmons
    Tene, Talia
    Guevara, Marco
    Borja, Myrian
    Salazar, Maria Jose Mendoza
    Robalino, Maria de Lourdes Palacios
    Gomez, Cristian Vacacela
    Bellucci, Stefano
    [J]. FRONTIERS IN PHYSICS, 2023, 11
  • [5] Plasmonics and THz frequency generation
    Polyushkin, D. K.
    Stone, E.
    Hendry, E.
    Barnes, W. L.
    [J]. METAMATERIALS VI, 2011, 8070
  • [6] Plasmonics for THz frequency applications
    Hendry, E.
    Polyushkin, D. K.
    Isaac, T. H.
    Stone, E.
    Barnes, W. L.
    [J]. ULTRAFAST PHENOMENA IN SEMICONDUCTORS AND NANOSTRUCTURE MATERIALS XV, 2011, 7937
  • [7] Exploiting plasmonics for THz and infrared sensing
    Hanham, S. M.
    Navarro-Cia, M.
    Ng, B.
    Aouani, H.
    Rahmani, M.
    Klein, N.
    Maier, S. A.
    [J]. TERAHERTZ PHYSICS, DEVICES, AND SYSTEMS VIII: ADVANCED APPLICATIONS IN INDUSTRY AND DEFENSE, 2014, 9102
  • [8] Shaping of electromagnetic fields for THz plasmonics
    Edelmann, A.
    Helfert, S.
    Jahns, J.
    [J]. COMPLEX LIGHT AND OPTICAL FORCES VIII, 2014, 8999
  • [9] Emerging Dirac materials for THz plasmonics
    Lupi, Stefano
    Molle, Alessandro
    [J]. APPLIED MATERIALS TODAY, 2020, 20