{"id":1134,"date":"2023-05-11T12:49:26","date_gmt":"2023-05-11T11:49:26","guid":{"rendered":"https:\/\/qmade.usal.es\/?page_id=1134"},"modified":"2025-12-01T10:11:17","modified_gmt":"2025-12-01T09:11:17","slug":"publications","status":"publish","type":"page","link":"https:\/\/qmade.usal.es\/?page_id=1134","title":{"rendered":"<!-- Publications -->"},"content":{"rendered":"<p>&nbsp;<\/p>\r\n\r\n<p>Full publication list can be found in the following <a href=\"https:\/\/scholar.google.es\/citations?user=KqRTdy0AAAAJ&amp;hl=es\">link<\/a><\/p>\r\n<p>Most relevant publications (last\u00a0 years):<\/p>\r\n<p>&nbsp;<\/p>\r\n<p>1. J.A. Delgado-Notario, et al. \u201c Unveiling the Miniband Structure of Graphene Moir\u00e9 Superlattices via Gate-Dependent Terahertz Photocurrent Spectroscopy\u201d <em>ACS Nano<\/em>.\u00a0 19, 30, 27338 (2025).<\/p>\r\n<hr \/>\r\n<p>2. J.A. Delgado-Notario, et al. \u201c Enhanced and Spectrally Selective Near Infrared Photothermal Conversion in Plasmonic Nanohelices \u201d <em>Adv. Funct. Mater<\/em>.\u00a0 2401599 (2024).<\/p>\r\n<hr \/>\r\n<p>3. J.M. Caridad, et al. \u201c Room-Temperature Plasmon-Assisted Resonant THz Detection in Single-Layer Graphene Transistors \u201d. <i>NanoLetters, 24, 935<\/i> (2024)<\/p>\r\n<hr \/>\r\n<p>4. D.M.A. Mackenzie, et al. \u201cUnraveling the electronic properties of graphene with substitutional oxygen\u201d\u00a0\u00a0 <i>2D <\/i><i>Materials<\/i>, 8, 045035 (2021).<\/p>\r\n<hr \/>\r\n<p>5. J.M. Caridad, et al. \u201cDetection of the Faraday chiral anisotropy\u201d. <i>Phys<\/i><i>. Rev. <\/i><i>Lett<\/i><i>. <\/i>126, 177401 (2021)<\/p>\r\n<hr \/>\r\n<p>6. P.R. Whelan, et al \u201cFermi velocity renormalization in graphene probed by terahertz time-domain spectroscopy\u201d. <i>2D <\/i><i>Materials<\/i>, 7, 035009 (2020).<\/p>\r\n<hr \/>\r\n<p>7. F. Chaves, et. al \u201cElectrostatics of metal-graphene interfaces: sharp p-n junctions for electron-optical applications\u201d,<i>Nanoscale<\/i>, 11, 21, 10273. (2019)<\/p>\r\n<hr \/>\r\n<p>8. B.S. Jessen, et al. \u201cLithographic bandstructure engineering of graphene\u201d. <i>Nature<\/i> <i>Nanotechnol<\/i>. 14, 340 (2019)<\/p>\r\n<hr \/>\r\n<p>9. J.M. Caridad, et al. \u201cConductance quantization suppression in the quantum Hall regime\u201d, <i>Nature<\/i> <i>Comm<\/i>. 9, 659 (2018)<\/p>\r\n<hr \/>\r\n<p>10. J.M. Caridad, et al. \u201cA graphene-edge ferroelectric molecular switch\u201d. <i>NanoLetters<\/i> 18, 4675 (2018)<\/p>\r\n<p>&nbsp;<\/p>\r\n<p>&nbsp;<\/p>\r\n\r\n\r\n\r\n<p>&nbsp;<\/p>\r\n<p>&nbsp;<\/p>","protected":false},"excerpt":{"rendered":"<p>&nbsp; Full publication list can be found in the following link Most relevant publications (last\u00a0 years): &nbsp; 1. J.A. Delgado-Notario, et al. \u201c Unveiling the Miniband Structure of Graphene Moir\u00e9 Superlattices via Gate-Dependent Terahertz Photocurrent Spectroscopy\u201d ACS Nano.\u00a0 19, 30, 27338 (2025). 2. J.A. Delgado-Notario, et al. \u201c Enhanced and Spectrally Selective Near Infrared Photothermal &hellip; <a href=\"https:\/\/qmade.usal.es\/?page_id=1134\" class=\"more-link\">Continuar leyendo<span class=\"screen-reader-text\"> \u00ab<!-- Publications -->\u00ab<\/span><\/a><\/p>\n","protected":false},"author":140,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-1134","page","type-page","status-publish","hentry"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 4.9.9 - aioseo.com -->\n\t<meta name=\"description\" content=\"Full publication list can be found in the following link Most relevant publications (last years): 1. J.A. 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