scholarly journals Linear and Nonlinear Properties of a Compact High-Kinetic-Inductance WSi Multimode Resonator

2021 ◽  
Vol 16 (4) ◽  
Author(s):  
Naftali Kirsh ◽  
Elisha Svetitsky ◽  
Samuel Goldstein ◽  
Guy Pardo ◽  
Ori Hachmo ◽  
...  
1985 ◽  
Vol 107 ◽  
pp. 315-328
Author(s):  
J. D. Huba

A review of several microinstabilities that have been suggested as possible anomalous transport mechanisms in current sheets is presented. The specific application is to a ‘field reversed plasma’ which is relevant to the so-called ‘diffusion region’ of a reconnection process. The linear and nonlinear properties of the modes are discussed, and each mode is assessed as to its importance in reconnection processes based upon these properties. It is concluded that the two most relevant instabilities are the ion acoustic instability and the lower-hybrid-drift instability. However, each instability has limitations as far as reconnection is concerned, and more research is needed in this area.


2009 ◽  
Vol 75 (2) ◽  
pp. 217-233 ◽  
Author(s):  
W. MASOOD ◽  
H. A. SHAH ◽  
A. MUSHTAQ ◽  
M. SALIMULLAH

AbstractLinear and nonlinear properties of the two-dimensional obliquely propagating dust magnetosonic wave are studied in a three-component dusty plasma. The dispersion relations in the linear and Kadomstev–Petviashvili (KP) equation in the nonlinear regime are derived for small-amplitude perturbations. It is shown that the linear dispersion properties of the low-frequency dust magnetosonic wave depend on the angle θ that the magnetic field makes with the x-axis, the ratio of ion to electron concentration, and the plasma beta. It is found that retaining the electron pressure term gives rise to novel features in the dust magnetosonic wave. The slow magnetosonic wave is found to be the damped mode and, therefore, the only propagating mode in our system is the fast magnetosonic mode. It is found that the KP equation admits compressive solitary structures. Finally, it is found that the amplitude of the soliton increases as the ratio of electron to ion concentration, p, angle θ, and the plasma beta, β, is increased.


2009 ◽  
Author(s):  
J. Petschulat ◽  
A. Chipouline ◽  
E. Pshenay-Severin ◽  
A. Tünnermann ◽  
T. Pertsch ◽  
...  

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