Ganapathi S. Subramania, Ph.D.
Affiliations: | 2000 | Iowa State University, Ames, IA, United States |
Area:
Condensed Matter Physics, Materials Science Engineering, Electronics and Electrical EngineeringGoogle:
"Ganapathi Subramania"Parents
Sign in to add mentorGary Tuttle | grad student | 2000 | Iowa State | |
(Photonic bandgap materials: Design, fabrication, and characterization.) |
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Publications
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Jain A, James AR, Nogan J, et al. (2020) Dark-state-based low-loss metasurfaces with simultaneous electric and magnetic resonant response Acs Photonics. 7: 241-248 |
Foteinopoulou S, Devarapu GCR, Subramania GS, et al. (2019) Phonon-polaritonics: enabling powerful capabilities for infrared photonics Nanophotonics. 8: 2129-2175 |
Anderson PD, Fischer AJ, Koleske DD, et al. (2018) III-nitride photonic crystal emitters by selective photoelectrochemical etching of heterogeneous quantum well structures Optical Materials Express. 8: 3543-3550 |
Anderson PD, Subramania G. (2017) Unidirectional edge states in topological honeycomb-lattice membrane photonic crystals. Optics Express. 25: 23293-23301 |
Anderson PD, Koleske DD, Povinelli ML, et al. (2017) Improving emission uniformity and linearizing band dispersion in nanowire arrays using quasi-aperiodicity Optical Materials Express. 7: 3634-3642 |
Fischer AJ, Anderson PD, Koleske DD, et al. (2017) Deterministic Placement of Quantum-Size Controlled Quantum Dots for Seamless Top-Down Integration Acs Photonics. 4: 2165-2170 |
Chong KE, Wang L, Staude I, et al. (2016) Highly-efficient all-dielectric Huygens' surface holograms(Conference Presentation) Proceedings of Spie. 9883: 988308 |
Chong KE, Wang L, Staude I, et al. (2016) Efficient Polarization-Insensitive Complex Wavefront Control Using Huygens' Metasurfaces Based on Dielectric Resonant Meta-atoms Acs Photonics. 3: 514-519 |
Chong KE, Staude I, James A, et al. (2015) Polarization-Independent Silicon Metadevices for Efficient Optical Wavefront Control. Nano Letters |
Xiao X, Fischer AJ, Wang GT, et al. (2014) Quantum-size-controlled photoelectrochemical fabrication of epitaxial InGaN quantum dots. Nano Letters. 14: 5616-20 |