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Stephen Kevin Gray

Affiliations: 
Center for Nanoscale Materials Argonne National Laboratory, Lemont, IL, United States 
Area:
Theoretical Chemistry, Nanophontonics, Plasmonics
Website:
http://chmwls.chm.anl.gov/staff/chem-dyn/gray.html
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"Stephen K. Gray"
Bio:

http://nano.anl.gov/docs/people/gray.pdf

Mean distance: 7.98
 
SNBCP

Parents

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William Hughes Miller grad student 1982 UC Berkeley
 (Classical and semiclassical aspects of chemical dynamics)
Mark S. Child post-doc 1982-1984 Oxford
Stuart A. Rice post-doc 1984-1986 Chicago
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Publications

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Parker JA, Sugimoto H, Coe B, et al. (2020) Excitation of Nonradiating Anapoles in Dielectric Nanospheres. Physical Review Letters. 124: 097402
Yifat Y, Coursault D, Peterson CW, et al. (2018) Reactive optical matter: light-induced motility in electrodynamically asymmetric nanoscale scatterers. Light, Science & Applications. 7: 105
Han F, Parker JA, Yifat Y, et al. (2018) Crossover from positive to negative optical torque in mesoscale optical matter. Nature Communications. 9: 4897
Sule N, Yifat Y, Gray SK, et al. (2017) Rotation and Negative Torque in Electrodynamically Bound Nanoparticle Dimers. Nano Letters
Figliozzi P, Sule N, Yan Z, et al. (2017) Driven optical matter: Dynamics of electrodynamically coupled nanoparticles in an optical ring vortex. Physical Review. E. 95: 022604
Fei Z, Scott ME, Gosztola DJ, et al. (2016) Nano-optical imaging of WS e2 waveguide modes revealing light-exciton interactions Physical Review B - Condensed Matter and Materials Physics. 94
Zhang N, Han C, Xu YJ, et al. (2016) Near-field dielectric scattering promotes optical absorption by platinum nanoparticles Nature Photonics
Sule N, Rice SA, Gray SK, et al. (2015) An electrodynamics-Langevin dynamics (ED-LD) approach to simulate metal nanoparticle interactions and motion. Optics Express. 23: 29978-92
Ungaro C, Gray SK, Gupta MC. (2015) Solar thermophotovoltaic system using nanostructures. Optics Express. 23: A1149-56
Li Z, Foley JJ, Peng S, et al. (2015) Reversible Modulation of Surface Plasmons in Gold Nanoparticles Enabled by Surface Redox Chemistry. Angewandte Chemie (International Ed. in English). 54: 8948-51
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