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Philip D Rack

Showing results (1-10 of 109) with videos related to

Pageof 11
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Nanotechnology|November 16, 2013
Monte Carlo simulations of nanoscale focused neon ion beam sputteringRajendra Timilsina, Philip D Rack
ACS Nano|March 6, 2010
Fundamental electron-precursor-solid interactions derived from time-dependent electron-beam-induced deposition simulations and experimentsJason D Fowlkes, Philip D Rack
Nanotechnology|August 12, 2011
Nanoscale electron beam induced etching: a continuum model that correlates the etch profile to the experimental parametersMatthew G Lassiter, Philip D Rack
Microscopy (Oxford, England)|November 1, 2014
Irradiation damage in multicomponent equimolar alloys and high entropy alloys (HEAs)Takeshi Nagase, Philip D Rack, Takeshi Egami
Nanomaterials (Basel, Switzerland)|October 23, 2020
Magnetoelectric Composites: Applications, Coupling Mechanisms, and Future DirectionsDhiren K Pradhan, Shalini Kumari, Philip D Rack
Nanomaterials (Basel, Switzerland)|February 25, 2023
Selected Area Deposition of High Purity Gold for Functional 3D ArchitecturesJohn Lasseter, Philip D Rack, Steven J Randolph
The Journal of Chemical Physics|August 6, 2020
Nearfield excited state imaging of bonding and antibonding plasmon modes in nanorod dimers via stimulated electron energy gain spectroscopyRobyn Collette, David A Garfinkel, Philip D Rack
Nanotechnology|March 2, 2013
A comparison of neon versus helium ion beam induced deposition via Monte Carlo simulationsRajendra Timilsina, Daryl A Smith, Philip D Rack
Nanotechnology|August 12, 2011
Simulating the effects of surface diffusion on electron beam induced deposition via a three-dimensional Monte Carlo simulationDaryl A Smith, Jason D Fowlkes, Philip D Rack
Small (Weinheim an Der Bergstrasse, Germany)|August 23, 2008
Understanding the kinetics and nanoscale morphology of electron-beam-induced deposition via a three-dimensional Monte Carlo simulation: the effects of the precursor molecule and the deposited materialDaryl A Smith, Jason D Fowlkes, Philip D Rack
Pageof 11

Showing results (1-10 of 109) with videos related to

Sort By:
Pageof 11
Nanotechnology|November 16, 2013
Monte Carlo simulations of nanoscale focused neon ion beam sputteringRajendra Timilsina, Philip D Rack
ACS Nano|March 6, 2010
Fundamental electron-precursor-solid interactions derived from time-dependent electron-beam-induced deposition simulations and experimentsJason D Fowlkes, Philip D Rack
Nanotechnology|August 12, 2011
Nanoscale electron beam induced etching: a continuum model that correlates the etch profile to the experimental parametersMatthew G Lassiter, Philip D Rack
Microscopy (Oxford, England)|November 1, 2014
Irradiation damage in multicomponent equimolar alloys and high entropy alloys (HEAs)Takeshi Nagase, Philip D Rack, Takeshi Egami
Nanomaterials (Basel, Switzerland)|October 23, 2020
Magnetoelectric Composites: Applications, Coupling Mechanisms, and Future DirectionsDhiren K Pradhan, Shalini Kumari, Philip D Rack
Nanomaterials (Basel, Switzerland)|February 25, 2023
Selected Area Deposition of High Purity Gold for Functional 3D ArchitecturesJohn Lasseter, Philip D Rack, Steven J Randolph
The Journal of Chemical Physics|August 6, 2020
Nearfield excited state imaging of bonding and antibonding plasmon modes in nanorod dimers via stimulated electron energy gain spectroscopyRobyn Collette, David A Garfinkel, Philip D Rack
Nanotechnology|March 2, 2013
A comparison of neon versus helium ion beam induced deposition via Monte Carlo simulationsRajendra Timilsina, Daryl A Smith, Philip D Rack
Nanotechnology|August 12, 2011
Simulating the effects of surface diffusion on electron beam induced deposition via a three-dimensional Monte Carlo simulationDaryl A Smith, Jason D Fowlkes, Philip D Rack
Small (Weinheim an Der Bergstrasse, Germany)|August 23, 2008
Understanding the kinetics and nanoscale morphology of electron-beam-induced deposition via a three-dimensional Monte Carlo simulation: the effects of the precursor molecule and the deposited materialDaryl A Smith, Jason D Fowlkes, Philip D Rack
Pageof 11