The source of ions accelerated from high-intensity laser interactions with thin foil targets is investigated by coating a deuterated plastic layer either on the front, rear or both surfaces of thin foil targets. The originating surface of the deuterons is therefore known and this method is used to assess the relative source contributions and maximum energies using a Thomson parabola spectrometer to obtain high-resolution light-ion spectra. Under these experimental conditions, laser intensity of (0.5–2.5) _ 10 19 W cm _2 , pulse duration of 400 fs and target thickness of 6–13 µm, deuterons originating from the front surface can gain comparable maximum energies as those from the rear surface and spectra from either side can deviate from Maxwe...
A collimated beam of fast protons, with energies as high as 1.5 MeV and total number of ≳109, confin...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
The investigation of proton and heavy ion acceleration was carried out in ultrahigh intensity laser ...
The source of ions accelerated from high-intensity laser interactions with thin foil targets is inve...
The impact of contaminants on laser-driven ion acceleration is investigated using particle-in-cell s...
We have observed deuterons accelerated to energies of about 2 MeV in the interaction of relativistic...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/98750/1/PhysPlasmas_18_040702.pd
We report on the characteristics of an ultrafast-laser driven proton beam from thinfilm targets. The...
Multi-species ion acceleration from ultra-thin foils was studied experimentally, employing the Vulca...
We experimentally investigated the accelerated proton beam characteristics such as maximum energy an...
The laser-ion acceleration with ultra-intense and ultra-short laser pulses has opened a new field of...
A collimated beam of fast protons, with energies as high as 1.5 MeV and total number of ≳109, confin...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
The investigation of proton and heavy ion acceleration was carried out in ultrahigh intensity laser ...
The source of ions accelerated from high-intensity laser interactions with thin foil targets is inve...
The impact of contaminants on laser-driven ion acceleration is investigated using particle-in-cell s...
We have observed deuterons accelerated to energies of about 2 MeV in the interaction of relativistic...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/98750/1/PhysPlasmas_18_040702.pd
We report on the characteristics of an ultrafast-laser driven proton beam from thinfilm targets. The...
Multi-species ion acceleration from ultra-thin foils was studied experimentally, employing the Vulca...
We experimentally investigated the accelerated proton beam characteristics such as maximum energy an...
The laser-ion acceleration with ultra-intense and ultra-short laser pulses has opened a new field of...
A collimated beam of fast protons, with energies as high as 1.5 MeV and total number of ≳109, confin...
International audienceThe interaction of short and intense laser pulses with plasmas or solids is a ...
The investigation of proton and heavy ion acceleration was carried out in ultrahigh intensity laser ...