The achievement of high gain with inertial fusion requires the compression of hydrogen isotopes to high density and temperatures. High densities can be achieved most efficiently by isentropic compression. This requires relatively slow pressure pulses on the order of 10-20 nanoseconds; however, the pressure profile must have the appropriate time. We present 1-D numerical simulations that indicate such a pressure profile can be generated by using pulsed power driven z pinches. Although high compression is calculated, the initial temperature is too low for ignition. Ignition could be achieved by heating a small portion of this compressed fuel with a short (-10 ps) high power laser pulse as previously described. Our 1-D calculations indicate th...
This dissertation presents: (1) the development of a gas-puff z-pinch system for the MAIZE pulsed po...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...
A Staged Z-pinch (H.U. Rahman, F.J. Wessel, N. Rostoker, Phys. Rev. Lett. 74:714, 1995), configured ...
This paper provides a brief review of experimental techniques for producing dynamic isentropic compr...
With the promising new results of fast z-pinch technology developed at Sandia National Laboratories,...
For avoiding the difficulties of the fast ignitor scheme, we present results where the ps-ignition i...
The recent development of Z pinch drivers for producing intense radiation envkomn~ enables study of ...
Demonstration of a single-shot, high-yield, fusion target is a goal of the z-pinch ICF program at SN...
We are developing a prototype high explosive pulsed power (HEPP) system to obtain isentropic Equatio...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
Abstract: Scheme to exploit the magnetic field driven near-isentropic compression of matter and expl...
Modern high-power lasers can generate extreme states of matter that are relevant to astrophysics, eq...
The gross properties of a high-density (n approximately equal to 10$sup 27$ m$sup -3$), small-radius...
In this paper we discuss design calculations for high yield inertial fusion capsules, indirectly dri...
This dissertation presents: (1) the development of a gas-puff z-pinch system for the MAIZE pulsed po...
This dissertation presents: (1) the development of a gas-puff z-pinch system for the MAIZE pulsed po...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...
A Staged Z-pinch (H.U. Rahman, F.J. Wessel, N. Rostoker, Phys. Rev. Lett. 74:714, 1995), configured ...
This paper provides a brief review of experimental techniques for producing dynamic isentropic compr...
With the promising new results of fast z-pinch technology developed at Sandia National Laboratories,...
For avoiding the difficulties of the fast ignitor scheme, we present results where the ps-ignition i...
The recent development of Z pinch drivers for producing intense radiation envkomn~ enables study of ...
Demonstration of a single-shot, high-yield, fusion target is a goal of the z-pinch ICF program at SN...
We are developing a prototype high explosive pulsed power (HEPP) system to obtain isentropic Equatio...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
Abstract: Scheme to exploit the magnetic field driven near-isentropic compression of matter and expl...
Modern high-power lasers can generate extreme states of matter that are relevant to astrophysics, eq...
The gross properties of a high-density (n approximately equal to 10$sup 27$ m$sup -3$), small-radius...
In this paper we discuss design calculations for high yield inertial fusion capsules, indirectly dri...
This dissertation presents: (1) the development of a gas-puff z-pinch system for the MAIZE pulsed po...
This dissertation presents: (1) the development of a gas-puff z-pinch system for the MAIZE pulsed po...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...
A Staged Z-pinch (H.U. Rahman, F.J. Wessel, N. Rostoker, Phys. Rev. Lett. 74:714, 1995), configured ...