[1] PEA-RODRGUEZ OVIDIO,PAL UMAPADA.Geometrical Tunability of Linear Optical Response of Silica-Gold Double Concentric Nanoshells[J].The Journal of Physical Chemistry C,2010,114(10):4414-4417.
[2] WU Yanpeng,NORDLANDER PETER.Plasmon Hybridization in Nanoshells with a Nonconcentric Core[J].The Journal of Chemical Physics,2006,125(12):124708.DOI:10.1063/1.2352750.
[3] RADLOFF COREY,HALAS NAOMI J.Plasmonic Properties of Concentric Nanoshells[J].Nano Letters,2004,4(7):1323-1327.
[4] ZHOU Zhangkai,LIU Jingfeng,BAO Yanjun,et al.Quantum Plasmonics Get Applied[J].Progress in Quantum Electronics,2019,65:1-20.
[5] RINGE EMILIE,SHARMA BHAVYA,HENRY ANNE-ISABELLE,et al.Single Nanoparticle Plasmonics[J].Physical Chemistry Chemical Physics,2013,15(12):4110-4129.
[6] ESTEBAN RUBEN,BORISOV ANDREI G,NORDLANDER PETER,et al.Bridging Quantum and Classical Plasmonics with a Quantum-Corrected Model[J].Nature Communications,2012,3(1):825.DOI:10.1038/ncomms1806.
[7] ZHU Wenqi,ESTEBAN RUBEN,BORISOV ANDREI,et al.Quantum Mechanical Effects in Plasmonic Structures with Subnanometre Gaps[J].Nature Communications,2016,7(1):1-14.
[8] SCHOLL JONATHAN A,KOH AILEEN,DIONNE JENNIFER A.Quantum Plasmon Resonances of Individual Metallic Nanoparticles[J].Nature,2012,483(7390):421-427.
[9] CIRAC CRISTIAN,URZHUMOV YAROSLAV,DOMNGUEZ FERNNDEZ,et al.Probing the Ultimate Limits of Plasmonic Enhancement[J].Science,2012,337(6098):1072-1074.
[10] TOSCANO GIUSEPPE,STRAUBEL JAKOB,KWIATKOWSKI ALEXANDER,et al.Resonance Shifts and Spill-Out Effects in Self-Consistent Hydrodynamic Nanoplasmonics[J].Nature Communications,2015,6(1):1-11.
[11] TOSCANO GIUSEPPE,STRAUBEL JAKOB,KWIATKOWSKI ALEXANDER,et al.Landau Damping and Limit to Field Confinement and Enhancement in Plasmonic Dimers[J].American Chemical Society Photonics,2017,4(11):2871-2880.
[12] BAGHRAMYAN HENRIKHM,DELLASALA FABIO,CIRAC CRISTIAN.Laplacian-Level Quantum Hydrodynamic Theory for Plasmonics[J].Physical Review X,2021,11(1):011049.DOI:10.1103/PhysRevX.11.011049.
[13] CIRAC CRISTIAN,DELLASALA FABIO.Quantum Hydrodynamic Theory for Plasmonics:Impact of the Electron Density Tail[J].Physical Review B,2016,93(20):205405.DOI:10.1103/PhysRevB.93.205405.
[14] ZHOU Qiang,ZHANG Pu,CHEN Xuewen.General Framework of Canonical Quasinormal Mode Analysis for Extreme Nano-Optics[J].Physical Review Letters,2021,127(26):267401.DOI:10.1103/PhysRevLett.127.267401.
[15] CIRAC CRISTIAN.Current-Dependent Potential for Nonlocal Absorption in Quantum Hydrodynamic Theory[J].Physical Review B,2017,95(24):245434.DOI:10.1103/PhysRevB.95.245434.
[16] ZHOU Qiang,LI Wancong,HE Zi,et al.Quantum Hydrodynamic Model for Noble Metal Nanoplasmonics[J].Physical Review B,2023,107(20):205413.DOI:10.1103/PhysRevB.107.205413.
[17] KUN Ding,CHAN Cheting.Plasmonic Modes of Polygonal Rods Calculated Using a Quantum Hydrodynamics Method[J].Physical Review B,2017,96(12):125134.DOI:10.1103/PhysRevB.96.125134.
[18] WEI Yan.Hydrodynamic Theory for Quantum Plasmonics:Linear-Response Dynamics of the Inhomogeneous Electron Gas[J].Physical Review B,2015,91(11):115416.DOI:10.1103/PhysRevB.91.115416.
[19] CIRAC CRISTIAN,JURGA RADOSLAW,MUHAMMAD KHALID,et al.Plasmonic Quantum Effects on Single-Emitter Strong Coupling[J].Nanophotonics,2019,8(10):1821-1833.
[20] KHALID MUHAMMAD,DELLASALA FABIO,CIRAC CRISTIAN.Optical Properties of Plasmonic Core-Shell Nanomatryoshkas:A Quantum Hydrodynamic Analysis[J].Optics Express,2018,26(13):17322-17334.
[21] BRACK MATTHIAS.The Physics of Simple Metal Clusters:Self-Consistent Jellium Model and Semiclassical Approaches[J].Reviews of Modern Physics,1993,65(3):677-732.
[22] EKARDT W.Size-Dependent Photoabsorption and Photoemission of Small Metal Particles[J].Physical Review B,1985,31(10):6360-6370.
[23] KHALID MUHAMMAD,CIRAC CRISTIAN.Numerical Analysis of Nonlocal Optical Response of Metallic Nanoshells[J].Photonics,2019,6(2):39.DOI:10.3390/photonics6020039.
[24] ZHANG Song,ZHANG Hong,XU Ting,et al.Coherent and Incoherent Damping Pathways Mediated by Strong Coupling of Two-Dimensional Atomic Crystals with Metallic Nanogrooves[J].Physical Review B,2018,97(23):235401.DOI:10.1103/PhysRevB.97.235401.
[25] PRODAN E,NORDLANDER P J.Plasmon Hybridization in Spherical Nanoparticles[J].The Journal of Chemical Physics,2004,120(11):5444-5454.
|