Emittance posts limits on the key requirements of final pulse length and spot size on target in heavy ion fusion drivers. In this paper, we show studies on the effect of nonlinear space charge on longitudinal emittance growth in the drift compression section. We perform simulations, using the 3D PIC code WARP, for a high current beam under conditions of bends and longitudinal compression. The linear growth rate for longitudinal emittance turns out to depend only on the peak line charge density, and is independent of pulse length, velocity tilt, and/or the pipe and beam size. This surprisingly simple result is confirmed by simulations and analytic calculations
The author analyzes the emittance growth mechanisms for a continuous, intense electron beam in a foc...
To achieve high focal spot intensities in heavy ion fusion, the ion beam must be compressed longitud...
Beams injected into a linear focusing channel typically have some degree of space-charge nonuniformi...
It is well known that the imperfection of pulse power sources that drive the linear induction accele...
Longitudinal bunch compression of intense ion beams for warm dense matter and heavy ion fusion appli...
Heavy ion driven inertial fusion drivers and experiments use space-charge dominated beams that requi...
Beam dynamics and emittance growth are investigated by using particle-in-cell simulations during a f...
Beam dynamics and emittance growth are investigated by using particle-in-cell simulations during a f...
Longitudinal compression of space-charge dominated beams can be achieved by imposing a head-to-tail ...
The need to extract the maximum beam intensity with low transversal emittance often comes with the d...
The longitudinal instability has potentially disastrous effects on the ion beams used for heavy ion ...
Heavy ion fusion requires injection, transport and acceleration of high current beams. Detailed simu...
Beam instability excited by space charge effect is investigated by particle simulations during final...
Neutralized drift compression offers an effective means for particle beam pulse compression and curr...
Heavy ion drivers for warm dense matter and heavy ion fusion applications use intense charge bunches...
The author analyzes the emittance growth mechanisms for a continuous, intense electron beam in a foc...
To achieve high focal spot intensities in heavy ion fusion, the ion beam must be compressed longitud...
Beams injected into a linear focusing channel typically have some degree of space-charge nonuniformi...
It is well known that the imperfection of pulse power sources that drive the linear induction accele...
Longitudinal bunch compression of intense ion beams for warm dense matter and heavy ion fusion appli...
Heavy ion driven inertial fusion drivers and experiments use space-charge dominated beams that requi...
Beam dynamics and emittance growth are investigated by using particle-in-cell simulations during a f...
Beam dynamics and emittance growth are investigated by using particle-in-cell simulations during a f...
Longitudinal compression of space-charge dominated beams can be achieved by imposing a head-to-tail ...
The need to extract the maximum beam intensity with low transversal emittance often comes with the d...
The longitudinal instability has potentially disastrous effects on the ion beams used for heavy ion ...
Heavy ion fusion requires injection, transport and acceleration of high current beams. Detailed simu...
Beam instability excited by space charge effect is investigated by particle simulations during final...
Neutralized drift compression offers an effective means for particle beam pulse compression and curr...
Heavy ion drivers for warm dense matter and heavy ion fusion applications use intense charge bunches...
The author analyzes the emittance growth mechanisms for a continuous, intense electron beam in a foc...
To achieve high focal spot intensities in heavy ion fusion, the ion beam must be compressed longitud...
Beams injected into a linear focusing channel typically have some degree of space-charge nonuniformi...