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zadetkov: 697
1.
  • Towards properties on deman... Towards properties on demand in quantum materials
    Basov, D N; Averitt, R D; Hsieh, D Nature materials, 11/2017, Letnik: 16, Številka: 11
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    The past decade has witnessed an explosion in the field of quantum materials, headlined by the predictions and discoveries of novel Landau-symmetry-broken phases in correlated electron systems, ...
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2.
  • Active Optical Metasurfaces... Active Optical Metasurfaces Based on Defect-Engineered Phase-Transition Materials
    Rensberg, Jura; Zhang, Shuyan; Zhou, You ... Nano letters, 02/2016, Letnik: 16, Številka: 2
    Journal Article
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    Active, widely tunable optical materials have enabled rapid advances in photonics and optoelectronics, especially in the emerging field of meta-devices. Here, we demonstrate that spatially selective ...
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3.
  • Memory Metamaterials Memory Metamaterials
    Driscoll, T; Kim, Hyun-Tak; Chae, Byung-Gyu ... Science (American Association for the Advancement of Science), 09/2009, Letnik: 325, Številka: 5947
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    The resonant elements that grant metamaterials their distinct properties have the fundamental limitation of restricting their useable frequency bandwidth. The development of frequency-agile ...
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4.
  • Modern Scattering‐Type Scan... Modern Scattering‐Type Scanning Near‐Field Optical Microscopy for Advanced Material Research
    Chen, Xinzhong; Hu, Debo; Mescall, Ryan ... Advanced materials (Weinheim), 06/2019, Letnik: 31, Številka: 24
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    Infrared and optical spectroscopy represents one of the most informative methods in advanced materials research. As an important branch of modern optical techniques that has blossomed in the past ...
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5.
  • Polariton panorama Polariton panorama
    Basov, D. N.; Asenjo-Garcia, Ana; Schuck, P. James ... Nanophotonics (Berlin, Germany), 11/2020, Letnik: 10, Številka: 1
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    In this brief review, we summarize and elaborate on some of the nomenclature of polaritonic phenomena and systems as they appear in the literature on quantum materials and quantum optics. Our summary ...
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6.
  • Efficiency of Launching Hig... Efficiency of Launching Highly Confined Polaritons by Infrared Light Incident on a Hyperbolic Material
    Dai, Siyuan; Ma, Qiong; Yang, Yafang ... Nano letters, 09/2017, Letnik: 17, Številka: 9
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    We investigated phonon–polaritons in hexagonal boron nitridea naturally hyperbolic van der Waals materialby means of the scattering-type scanning near-field optical microscopy. Real-space ...
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7.
  • Colloquium : Graphene spect... Colloquium : Graphene spectroscopy
    Basov, D. N.; Fogler, M. M.; Lanzara, A. ... Reviews of modern physics, 07/2014, Letnik: 86, Številka: 3
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    Graphene has become one of the largest fields in condensed matter research and is having a large impact on technological applications. This Colloquium summarizes the experimental knowledge on the ...
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8.
  • Terahertz Magnetic Response... Terahertz Magnetic Response from Artificial Materials
    Yen, T. J.; Padilla, W. J.; Fang, N. ... Science (American Association for the Advancement of Science), 03/2004, Letnik: 303, Številka: 5663
    Journal Article
    Recenzirano

    We show that magnetic response at terahertz frequencies can be achieved in a planar structure composed of nonmagnetic conductive resonant elements. The effect is realized over a large bandwidth and ...
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9.
  • Gate-tuning of graphene pla... Gate-tuning of graphene plasmons revealed by infrared nano-imaging
    FEI, Z; RODIN, A. S; FOGLER, M. M ... Nature (London), 07/2012, Letnik: 487, Številka: 7405
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    Surface plasmons are collective oscillations of electrons in metals or semiconductors that enable confinement and control of electromagnetic energy at subwavelength scales. Rapid progress in ...
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10.
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