{"id":1852,"date":"2013-08-14T00:26:01","date_gmt":"2013-08-14T00:26:01","guid":{"rendered":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/?p=1852"},"modified":"2013-08-14T16:46:09","modified_gmt":"2013-08-14T16:46:09","slug":"nicholas-x-fang","status":"publish","type":"post","link":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/nicholas-x-fang\/","title":{"rendered":"Nicholas X Fang"},"content":{"rendered":"
US Patent # 7,998,330, N. Fang, P. M. Ferreira, K. H. Hsu, P. Schultz, and A. Kumar, Direct Nanoscale Patterning of Metals Using Polymer Electrolytes<\/i>.<\/i><\/p>\n
Srituravanich W.,\u00a0Fang N., Sun C., Luo, Q., and Zhang X.,\u00a0 \u201cPlasmonic Nanolithography\u201d,\u00a0Nano Letters<\/i>, Vol 4(6), pp1085-1088, (2004).<\/p>\n
Fang N., Lee H., Sun C., and Zhang X.,\u00a0 \u201cSub\u2013Diffraction-Limited Optical Imaging with a Silver Superlens\u201d,\u00a0Science<\/i>, Vol 308(5721), pp534-537, (2005)<\/p>\n
Fang N., D. Xi, J. Xu, M. Ambati, C. Sun and X. Zhang, \u201cUltrasonic Metamaterials with Negative Modulus,\u201d\u00a0Nature Materials<\/i>, Vol 5 (6), pp 452-456, (2006)<\/p>\n
Hsu K. H., P. L. Schultz, P. M. Ferreira, and N. X. Fang, \u201cElectrochemical Nanoimprinting with Solid-State Superionic Stamps,\u201d Nano Letters<\/em>, (2007) 7<\/b>:2, 446-451.<\/p>\n Zhang, S., L. Yin and N. X. Fang, \u201cFocusing Ultrasound with an Acoustic Metamaterial Network,\u201d Phys. Rev. Lett<\/em>, (2009) 102, art.no. 194301<\/p>\n Chaturvedi, P., K. H. Hsu, A. Kumar, K. H. Fung, J. C. Mabon and N. X. Fang, \u201cImaging of Plasmonic Modes of Silver Nanoparticles Using High-Resolution Cathodoluminescence Spectroscopy, \u201d ACS Nano<\/em>, (2009), 3:10, 2965-2974.<\/p>\n P. Chaturvedi, W. Wu, V. Logeeswaran, Z. Yu, M. Saif Islam, S. Y. Wang, R. Stanley Williams, and Nicholas X. Fang, “A smooth optical superlens”, Appl. Phys. Lett.<\/em>, (2010), 96, 043102.<\/p>\n Chern, W., Hsu K., Chun I.-S., de Azeredo B. P., Ahmed N., Kim K-H, Zuo J., Fang N., Ferreira P., and Li X., \u201cNonlithographic Patterning and Metal-Assisted Chemical Etching for Manufacturing of Tunable Light-Emitting Silicon Nanowire Arrays\u201d, Nano Letters<\/em>, (2010), 10:5, pp 1582-1588.<\/p>\n Lee H., C.G. Xia and N. X. Fang, “First Jump of a Microgel: Actuation Speed Enhancement by Elastic Instability,” Soft Matter<\/i>, (2010) 6, pp4342-4345.<\/p>\n Zhang S., C.G. Xia, and N.X. Fang, \u201cBroadband Acoustic Cloak for Ultrasound Waves\u201d, Physical Review Letters<\/em>, (2011), 106, art no 024301.<\/p>\n Ko K., A. Kumar, K.-H. Fung, R. Ambekar, G. L. Liu, <\/b>N.X. Fang and K. Toussaint, Jr, \u201cNonlinear Optical Response from Arrays of Au Bowtie Nanoantennas\u201d, Nano Letters<\/em>, (2011), 11(1), pp 61-15.<\/p>\n Kumar A., K. H. Hsu, K. E. Jacobs, P.M. Ferreira, and N.X. Fang, \u201cDirect metal nano-imprinting using an embossed solid electrolyte stamp\u201d, Nanotechnology<\/em>, (2011), \u00a022(2), art no 155302.<\/p>\n Cui Y., K. H. Fung, J. Xu, H. Ma, J. Yi, S. He, and N. X. Fang, \u201cUltra-broadband Light Absorption by a Sawtooth Anisotropic Metamaterial Slab\u201d, Nano Letters<\/em> 12, (2012) pp1443-1447.<\/p>\n Roxworthy B. J., Kaspar D. Ko, Anil Kumar, Kin Hung Fung, K. C. Chow, G. Logan Liu, Nicholas X. Fang, and K. C. Toussaint, Jr., \u201cApplication of Plasmonic Bowtie Nanoantenna Arrays for Optical Trapping, Stacking, and Sorting\u201d, Nano Letters<\/em> (2012), 12(2), pp 796\u2013801<\/p>\n Howon Lee, Jiaping Zhang, Hanqing Jiang, and Nicholas X. Fang, \u201cPrescribed pattern transformation in swelling gel tubes by elastic instability\u201d, Phys. Rev. Lett.<\/em> (2012), 108,<\/b> art no.214304.<\/p>\n D Jin, A Kumar, KH Fung, J Xu, NX Fang, \u201cFerroelectric-Gated Terahertz Plasmonics on Graphene\u201d, Applied Physics Letters<\/em>, (2013) in press.<\/p>\n BP Azeredo, J Sadhu, J Ma, K Jacobs, J Kim, K Lee, JH Eraker, X Li, S Sinha, N Fang, P Ferreira, and K Hsu, \u201cSilicon nanowires with controlled sidewall profile and roughness fabricated by thin-film dewetting and metal-assisted chemical etching\u201d,\u00a0 Nanotechnology<\/em>, (2013), 24, 225305.<\/p>\n","protected":false},"excerpt":{"rendered":" Nanophotonic and acoustic materials and devices; physics, nanofabrication, instrumentation<\/p>\n","protected":false},"author":370,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":[],"categories":[80],"tags":[11658],"_links":{"self":[{"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/posts\/1852"}],"collection":[{"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/users\/370"}],"replies":[{"embeddable":true,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/comments?post=1852"}],"version-history":[{"count":5,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/posts\/1852\/revisions"}],"predecessor-version":[{"id":1967,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/posts\/1852\/revisions\/1967"}],"wp:attachment":[{"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/media?parent=1852"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/categories?post=1852"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/mtlsites.mit.edu\/annual_reports\/2013\/wp-json\/wp\/v2\/tags?post=1852"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}