{"id":6953,"date":"2021-07-21T13:17:52","date_gmt":"2021-07-21T04:17:52","guid":{"rendered":"http:\/\/www-wp22.ile.osaka-u.ac.jp\/?page_id=6953"},"modified":"2024-03-01T11:50:21","modified_gmt":"2024-03-01T02:50:21","slug":"thp","status":"publish","type":"page","link":"http:\/\/www-wp22.ile.osaka-u.ac.jp\/groups\/research01\/thp\/","title":{"rendered":"\u30c6\u30e9\u30d8\u30eb\u30c4\u30d5\u30a9\u30c8\u30cb\u30af\u30b9\uff08THP\uff09"},"content":{"rendered":"

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1) Nanomaterials
\nTerahertz Excitonics in Carbon Nanotubes: Exciton Autoionization and Multiplication, Nano Letters 20, 3098(2020)
\nLow-temperature GaAs-based plasmonic photoconductive terahertz detector with Au nano-islands, Photonics Research 8, 1448-1456(2020)
\nAdsorption energy of oxygen molecules on graphene and two-dimensional tungsten disulfide, Scientific Reports 7, 1774 (2017)
\nProbing low-density carriers in a single atomic layer using terahertz parallel-plate waveguides, Optics express 24, 3885(2016)
\nImaging molecular adsorption and desorption dynamics on graphene using terahertz emission spectroscopy, Scientific Reports 4, 604(2014)
\nBroadband terahertz polarizers with ideal performance based on aligned carbon nanotube stacks. Nano letters 12 (2), 787-790(2012)<\/p>\n

2) Strongly Correlated Electron Systems and other Exotic Materials
\nTerahertz Electrodynamics in Transition Metal Oxides, Adv. Opt. Mater. 201900958(2019)
\nTerahertz Emission Functionality of High\u2010Temperature Superconductors and Similar Complex Systems, Adv. Opt. Mater. 201900892(2019)
\nTunable electromagnetically induced transparency from a superconducting terahertz metamaterial, Appl. Phys. Lett. 110, 241105 (2017)
\nUnderstanding the nature of ultrafast polarization dynamics of ferroelectric memory in the multiferroic BiFeO3, Advanced Materials 21, 2881(2009)<\/p>\n

3) Wide Bandgap Semiconductors\/Semiconductors\/Solar Cells
\nUltrafast Terahertz Nanoseismology of GaInN\/GaN Multiple Quantum Wells, Adv. Opt. Mater. 2100258(2021)
\nCharacterisation of through-silicon vias using laser terahertz emission microscopy, Nature Electronics 4, 202 (2021)
\nUltrafast Spatiotemporal Photocarrier Dynamics near GaN Surfaces Studied by Terahertz Emission Spectroscopy, Scientific Reports, 10, 14633(2020)
\nProbing the surface potential of oxidized silicon by assessing terahertz emission, Applied Physics Letters 110, 163502(2017)
\nPolarization imaging of imperfect m-plane GaN surfaces, APL Photonics 2, 041304(2017)<\/p>\n

4) Terahertz Biosensing\/Imaging
\nTerahertz near-field microscopy of ductal carcinoma in situ (DCIS) of the breast, Journal of Physics: Photonics 2, 044008(2020)
\nA terahertz-microfluidic chip with a few arrays of asymmetric meta-atoms for the ultra-trace sensing of solutions, Photonics 6, 12(2019)
\nTerahertz microfluidic chips sensitivity-enhanced with a few arrays of meta-atoms, APL Photonics 3, 051603 (2018)<\/p>\n

5) Methodology
\nIntensity-dependent self-induced dual-color laser phase modulation and its effect on terahertz generation, Scientific Reports 11, 498(2021)
\nHigh-sensitivity photoconductive detectors with wide dipole electrodes for low frequency THz wave detection, Journal of Applied Physics 125, 151610(2019)
\nScanning laser terahertz near-field reflection imaging system, Appl. Phys. Express 12 122005(2018)
\nMeasurable lower limit of thin film conductivity with parallel plate waveguide terahertz time domain spectroscopy, Optics Letters 42, 3056(2017)
\nStudy of photoexcited-carrier dynamics in GaAs photoconductive switches using dynamic terahertz emission microscopy, Photonics Research 4, A9(2016)
\nScanning laser THz imaging system, Journal of Physics D: Applied Physics 47, 374007(2014)
\nTunable narrowband terahertz generation in lithium niobate crystals using a binary phase mask, Optics letters 38, 953(2013)
\nDistributed source model for the full-wave electromagnetic simulation of nonlinear terahertz generation, Optics express 20, 18397(2012)
\nScanning laser terahertz near-field imaging system, Optics express 20, 12959(2012)
\nHigh-sensitive scanning laser magneto-optical imaging system, Review of Scientific Instruments 81, 013701(2010)<\/p>\n

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