Coherent terahertz and millimeter wave radiation from laser accelerated electron bunches has been measured. The bunches were produced by tightly focusing (spot diameter ˜ 6¿µm) a high peak power (up to 10 TW), ultra-short ( = 50¿fs) laser pulse from a high repetition rate (10 Hz) laser system (0.8 µm), onto a high density (>1019¿cm-3) pulsed gas jet of length ˜ 1.5¿mm. As the electrons exit the plasma, coherent transition radiation is generated at the plasma-vacuum boundary for wavelengths long compared to the bunch length. Radiation in the 0.3–19 THz range and at 94 GHz has been measured and found to depend quadratically on the bunch charge. The measured radiated energy for two different collection angles is in good agreement with theor...
Experimental results are reported from two measurement techniques (semiconductor switching and elec...
The temporal profile of relativistic laser-plasma-accelerated electron bunches has been characterize...
Ultra-short electron beams, produced through the velocity bunching compression technique, are used ...
Coherent terahertz and millimeter wave radiation from laser accelerated electron bunches has been me...
Coherent THz radiation was produced from relativistic electron bunches of subpicosecond duration. Th...
Theoretical and experimental studies are presented of coherent terahertz radiation (THz radiation, w...
High-charge electron beams produced by laser-wakefield accelerators are potentially novel, scalable ...
Coherent radiation in the 0.3 - 3 THz range has been generated from femto second electron bunches at...
Electron beam based radiation sources provide electromagnetic radiation for countless applications....
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
At LBNL, laser wakefield accelerators (LWFA) can now produce ultra-short electron bunches with energ...
Laser-wakefield accelerators generate femtosecond-duration electron bunches with energies from 10s o...
Experimental results are reported from two measurement techniques (semiconductor switching and elect...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
Experimental results are reported from two measurement techniques (semiconductor switching and elec...
The temporal profile of relativistic laser-plasma-accelerated electron bunches has been characterize...
Ultra-short electron beams, produced through the velocity bunching compression technique, are used ...
Coherent terahertz and millimeter wave radiation from laser accelerated electron bunches has been me...
Coherent THz radiation was produced from relativistic electron bunches of subpicosecond duration. Th...
Theoretical and experimental studies are presented of coherent terahertz radiation (THz radiation, w...
High-charge electron beams produced by laser-wakefield accelerators are potentially novel, scalable ...
Coherent radiation in the 0.3 - 3 THz range has been generated from femto second electron bunches at...
Electron beam based radiation sources provide electromagnetic radiation for countless applications....
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
At LBNL, laser wakefield accelerators (LWFA) can now produce ultra-short electron bunches with energ...
Laser-wakefield accelerators generate femtosecond-duration electron bunches with energies from 10s o...
Experimental results are reported from two measurement techniques (semiconductor switching and elect...
Electron beam based radiation sources provide electromagnetic radiation for countless applications. ...
Experimental results are reported from two measurement techniques (semiconductor switching and elec...
The temporal profile of relativistic laser-plasma-accelerated electron bunches has been characterize...
Ultra-short electron beams, produced through the velocity bunching compression technique, are used ...