Badziak et al., 2003 - Google Patents
Generation of energetic protons from thin foil targets irradiated by a high-intensity ultrashort laser pulseBadziak et al., 2003
- Document ID
- 5755373405674659584
- Author
- Badziak J
- Woryna E
- Parys P
- Platonov K
- Jabłoński S
- Ryć L
- Vankov A
- Wołowski J
- Publication year
- Publication venue
- Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
External Links
Snippet
The results of investigations of fast proton generation from thin foil targets irradiated by 1-ps laser pulses of intensities up to 1.5× 1017W/cm2 are reported. The characteristics of forward- emitted proton beams produced from both single-and double-layer targets have been …
- 239000011888 foil 0 title abstract description 17
Classifications
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05G—X-RAY TECHNIQUE
- H05G2/00—Apparatus or processes specially adapted for producing X-rays, not involving X-ray tubes, e.g. involving generation of a plasma
- H05G2/001—X-ray radiation generated from plasma
- H05G2/003—X-ray radiation generated from plasma being produced from a liquid or gas
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Badziak et al. | Fast proton generation from ultrashort laser pulse interaction with double-layer foil targets | |
Umstadter | Relativistic laser–plasma interactions | |
Maksimchuk et al. | Forward ion acceleration in thin films driven by a high-intensity laser | |
Yatom et al. | Space-and time-resolved characterization of nanosecond time scale discharge at pressurized gas | |
Badziak et al. | Production of ultrahigh ion current densities at skin-layer subrelativistic laser–plasma interaction | |
Ivanov et al. | Comparative study of amplified spontaneous emission and short pre-pulse impacts onto fast electron generation at sub-relativistic femtosecond laser-plasma interaction | |
Láska et al. | Generation of multiply charged ions at low and high laser-power densities | |
Badziak et al. | Laser-driven generation of high-current ion beams using skin-layer ponderomotive acceleration | |
Badziak et al. | Experimental evidence of differences in properties of fast ion fluxes from short-pulse and long-pulse laser-plasma interactions | |
Badziak et al. | Generation of fluxes of highly charged heavy ions from a picosecond laser-produced plasma | |
Kant et al. | Effect of axial magnetic field on axicon laser-induced electron acceleration | |
Badziak et al. | Generation of energetic protons from thin foil targets irradiated by a high-intensity ultrashort laser pulse | |
Bychenkov et al. | Pion production under the action of intense ultrashort laser pulse on a solid target | |
Gozhev et al. | Pulsed source of charged particles and neutrons based on a 10-petawatt laser system irradiating a microcluster medium | |
Norreys et al. | Observation of ion temperatures exceeding background electron temperatures in petawatt laser-solid experiments | |
Laska et al. | Factors influencing parameters of laser ion sources | |
Badziak et al. | Ultraintense ion beams driven by a short-wavelength short-pulse laser | |
Wu et al. | Effect of inside diameter of tip on proton beam produced by intense laser pulse on double-layer cone targets | |
Culfa et al. | Plasma scale length and quantum electrodynamics effects on particle acceleration at extreme laser plasmas | |
Borghesi et al. | Propagation issues and energetic particle production in laser–plasma interactions at intensities exceeding 1019 W/cm2 | |
Badziak et al. | Effect of foil target thickness on fast proton generation driven by ultrashort-pulse laser | |
Sakagami et al. | Effects of long rarefied plasma on fast electron generation for FIREX-I targets | |
Sarri et al. | A table-top laser-based source of short, collimated, ultra-relativistic positron beams | |
Borghesi et al. | Laser-driven proton beams: Acceleration mechanism, beam optimization, and radiographic applications | |
RU2643523C1 (en) | Method of generating neutron pulses |