Modeling polarization for Hyper-NA lithography tools and masks
Kafai Lai, Alan E. Rosenbluth, et al.
SPIE Advanced Lithography 2007
We have studied the electric resistivity in superconducting amorphous (Formula presented)Si films in a perpendicular magnetic field (Formula presented)+(Formula presented) sin ωt with (Formula presented)≪(Formula presented). For (Formula presented)=0 a resistive voltage only appeared due to flux creep above the critical current (Formula presented). For (Formula presented)>0 we observed perfectly Ohmic behavior at currents I≪(Formula presented)n((Formula presented)=0), with the resistivity increasing proportional to ω and (Formula presented). We present a simplified model discussion explaining our results in terms of the magnetic flux transferred across the sample during each cycle of the oscillatory magnetic field because of the electric transport current. © 1997 The American Physical Society.
Kafai Lai, Alan E. Rosenbluth, et al.
SPIE Advanced Lithography 2007
R.J. Gambino, N.R. Stemple, et al.
Journal of Physics and Chemistry of Solids
A. Gupta, R. Gross, et al.
SPIE Advances in Semiconductors and Superconductors 1990
Revanth Kodoru, Atanu Saha, et al.
arXiv