Graphene-enabled silver nanoantenna sensors JC Reed, H Zhu, AY Zhu, C Li, E Cubukcu Nano letters 12 (8), 4090-4094, 2012 | 213 | 2012 |
Plasmonic metamaterial absorber for broadband manipulation of mechanical resonances H Zhu, F Yi, E Cubukcu Nature Photonics 10 (11), 709–714, 2016 | 159 | 2016 |
Voltage tuning of plasmonic absorbers by indium tin oxide F Yi, E Shim, AY Zhu, H Zhu, JC Reed, E Cubukcu Applied Physics Letters 102 (22), 221102, 2013 | 155 | 2013 |
Optomechanical enhancement of doubly resonant 2D optical nonlinearity F Yi, M Ren, JC Reed, H Zhu, J Hou, CH Naylor, ATC Johnson, R Agarwal, ... Nano letters 16 (3), 1631-1636, 2016 | 92 | 2016 |
Wavelength Tunable Microdisk Cavity Light Source with a Chemically Enhanced MoS2 Emitter JC Reed, AY Zhu, H Zhu, F Yi, E Cubukcu Nano letters 15 (3), 1967-1971, 2015 | 88 | 2015 |
Optoelectromechanical multimodal biosensor with graphene active region AY Zhu, F Yi, JC Reed, H Zhu, E Cubukcu Nano letters 14 (10), 5641-5649, 2014 | 85 | 2014 |
Plasmonically enhanced thermomechanical detection of infrared radiation F Yi, H Zhu, JC Reed, E Cubukcu Nano letters 13 (4), 1638-1643, 2013 | 76 | 2013 |
Silicon-on-glass graphene-functionalized leaky cavity mode nanophotonic biosensor Q Guo, H Zhu, F Liu, AY Zhu, JC Reed, F Yi, E Cubukcu ACS Photonics 1 (3), 221-227, 2014 | 44 | 2014 |
Thermoplasmonic membrane-based infrared detector F Yi, H Zhu, JC Reed, AY Zhu, E Cubukcu IEEE Photonics Technology Letters 26 (2), 202-205, 2014 | 37 | 2014 |
Nanoantenna absorbers for thermal detectors H Zhu, F Yi, E Cubukcu IEEE Photonics Technology Letters 24 (14), 1194-1196, 2012 | 34 | 2012 |
Nanoantenna-induced current enhancement of nano-sized metal/oxide interfaces J Hou, H Zhu, JC Reed, F Yi, E Cubukcu, DA Bonnell Applied Physics Letters 110 (4), 043103, 2017 | 9 | 2017 |
Electromechanically reconfigurable CdS nanoplate based nonlinear optical device F Yi, M Ren, H Zhu, W Liu, R Agarwal, E Cubukcu Optics Express 24 (12), 13459-13466, 2016 | 2 | 2016 |
Electrically Tunable Plasmonic Absorber Enabled by Indium Tin Oxide E Shim, A Zhu, H Zhu, J Reed, E Cubukcu CLEO: QELS_Fundamental Science, QTh1B. 7, 2013 | 2 | 2013 |
Voltage tunable dual wavelength light source via optomechanically controlled CdS nanoplates F Yi, M Ren, H Zhu, W Liu, R Agarwal, E Cubukcu CLEO: QELS_Fundamental Science, FTu3H. 4, 2017 | | 2017 |
Plasmonic metamaterial device for optomechanical amplification and dampening H Zhu, F Yi, E Cubukcu Lasers and Electro-Optics (CLEO), 2017 Conference on, 1-2, 2017 | | 2017 |
Microdisk Cavity-Coupled MoS 2 with Tunable Narrowband Emission JC Reed, AY Zhu, H Zhu, E Cubukcu CLEO: Science and Innovations, SW4I. 1, 2015 | | 2015 |
Optomechanical devices and sensors based on plasmonic metamaterial absorbers H Zhu | | 2015 |
Thermal plasmomechanical infrared detector F Yi, H Zhu, JC Reed, E Cubukcu Lasers and Electro-Optics (CLEO), 2013 Conference on, 1-2, 2013 | | 2013 |
Transport properties of a Fe0. 04Si0. 96 film at low temperatures WF Su, JL Wang, H Zhu, YL Fan, ZM Jiang Journal of Physics D: Applied Physics 44 (8), 085401, 2011 | | 2011 |
Employing new temperature controlling device to investigate correlation between temperature and coefficient of liquids surface tension [J] H ZHU, R DENG, Y CHEN Physics Experimentation 7, 014, 2009 | | 2009 |