Cheyenne J. Sheppard
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Biography and Research Information
OverviewAI-generated summary
Cheyenne J. Sheppard's research investigates the physical properties and behavior of nanoparticles, particularly in colloidal systems. Her work has explored the enhanced radiation pressure reversal on free carriers in nanoparticles and its dependence on polarization within the Rayleigh regime. Additionally, she has studied the electrostatic tunability of charged, binary nanoparticle assemblies in dielectric colloidal systems. Sheppard has published 15 papers, accumulating 109 citations, and holds an h-index of 6. She has collaborated with Brandon A. Kemp, with whom she shares 2 publications, both from Arkansas State University.
Metrics
- h-index: 6
- Publications: 15
- Citations: 110
Selected Publications
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Electrostatic tunability of charged, binary nanoparticle assemblies in dielectric colloidal systems (2022)
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Enhanced radiation pressure reversal on free carriers in nanoparticles and polarization dependence in the Rayleigh regime (2021)
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Modeling optical manipulation using the field-kinetic and canonical formulations of electrodynamics (2019)
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Non-touching confinement of ternary particle systems by electrostatic surface forces (2019)
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Electromagnetic and material contributions to stress, energy, and momentum in metamaterials (2017)
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A relativistic treatment of the kinetic and canonical electromagnetic systems (2016)
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Kinetic-energy-momentum tensor in electrodynamics (2016)
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Field and material stresses predict observable surface forces in optical and electrostatic manipulation (2016)
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Relativistic analysis of field-kinetic and canonical electromagnetic systems (2016)
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Coupled electrostatic and material surface stresses yield anomalous particle interactions and deformation (2016)
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Physics of electromagnetic and material stresses in optical manipulation (2015)
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Optical pressure deduced from energy relations within relativistic formulations of electrodynamics (2014)
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Spatiotemporal evolution of plasma molecular emission following laser ablation of explosive analogs (2013)
Collaboration Network
Top Collaborators
- Enhanced radiation pressure reversal on free carriers in nanoparticles and polarization dependence in the Rayleigh regime
- Electrostatic tunability of charged, binary nanoparticle assemblies in dielectric colloidal systems
- Enhanced radiation pressure reversal on free carriers in nanoparticles and polarization dependence in the Rayleigh regime
- Electrostatic tunability of charged, binary nanoparticle assemblies in dielectric colloidal systems
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