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141
All-Si Photodetectors with a Resonant Cavity for Near-Infrared Polarimetric Detection
Published 2019-01-01Subjects: “…Internal emission of hot electrons…”
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142
The Effect of Quasi-Spherical Gold Nanoparticles on Two-Photon Induced Reactive Oxygen Species for Cell Damage
Published 2021-04-01Subjects: Get full text
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143
Competition among the two-plasmon decay of backscattered light, filamentation of the electron-plasma wave and side stimulated Raman scattering
Published 2023-01-01Subjects: Get full text
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144
Non-equilibrium effects in a relativistic plasma sheath model
Published 2020-01-01Subjects: Get full text
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145
Plasma Electronics
Published 2010Subjects: “…Wave Propagation in Hot Electron Plasmas…”
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Technical Report -
146
Plasma Electronics
Published 2010Subjects: “…Interaction of an Electron Beam with a Hot-Electron Plasma…”
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Technical Report -
147
Plasma Electronics
Published 2010Subjects: “…Dispersion Diagrams for Hot-Electron Plasmas…”
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Technical Report -
148
Plasma Electronics
Published 2010Subjects: “…Bremsstrahlung Spectrum of Hot Electrons…”
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Technical Report -
149
Plasma Electronics
Published 2010Subjects: “…Dispersion Diagrams for Hot-Electron Plasmas…”
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Technical Report -
150
Magnetic collimation of petawatt driven fast electron beam for prospective fast ignition studies
Published 2010“…Experimental results showed guided transport of hot electron beam over hundreds of microns length inside solid density plasma, which were obtained from two experiments examining the scheme for petawatt laser driven hot electron beam while employing various target configurations. © 2010 IOP Publishing Ltd.…”
Journal article -
151
Ultrafast Multiphoton Thermionic Photoemission from Graphite
Published 2017-01-01“…We investigate the nonlinear interactions within a hot electron gas in graphite through multiphoton-induced thermionic emission. …”
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152
Ultrafast hot-carrier dynamics in ultrathin monocrystalline gold
Published 2024-01-01“…The hot-electron injection efficiency from monocrystalline gold into TiO2, approaching 9% is measured, close to the theoretical limit. …”
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153
A study of picosecond laser-solid interactions up to 10(19) W cm(-2)
Published 1997“…The maximum ion energy cutoff Emax (which is related to the hot electron temperature) is in the range 1.0-12.0 MeV and is shown to scale as Emax≈I1/3. …”
Journal article -
154
Studies on high frequency performance of advanced Si MOSFETs
Published 2009“…It is demonstrated that device noise parameters, such as NFmin and Rn degraded most under maximum substrate-current (IB,max) stress. However, hot electron stress and hot hole injection has much lower degradation on device noise performance. …”
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Final Year Project (FYP) -
155
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157
Comprehensive dynamic on-resistance assessments in GaN-on-Si MIS-HEMTs for power switching applications
Published 2020“…This study comprehensively analyzed the reliability of trapping and hot-electron effects responsible for the dynamic on-resistance (Ron) of GaN-based metal–insulator–semiconductor high electron mobility transistors. …”
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158
Higher Order Non-Planar Electrostatic Solitary Potential in a Streaming Electron-Ion Magnetoplasma: Phase Plane Analysis
Published 2023-02-01“…It is observed that the amplitude and width of the electron acoustic waves (EAWs) are affected by a slight change in the cold to hot electron temperature ratio (<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><msub><mi>σ</mi><mi>c</mi></msub></semantics></math></inline-formula>) and the number density of the cold to hot electron ratio (<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><mi>α</mi></semantics></math></inline-formula>). …”
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159
Ultrafast kinetic inductance samplers
Published 2006“…A simple model for sampling is explained in terms of hot electron dynamics in the presence of a superconducting energy gap.…”
Conference item -
160
Experimental studies of the advanced fast ignitor scheme
Published 2000“…Guided compression offers an attractive route to explore some of the physics issues of hot electron heating and transport in the fast ignition route to inertial confinement fusion, whilst avoiding the difficulties associated with establishing the stability of the channel formation pulse. …”
Journal article