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Laser acceleration of protons from thin film targets

机译:从薄膜靶激光加速质子

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摘要

A collimated beam of fast protons, witlr energies as high as 10 MeV and total number of 109,109, confined in a cone angle of 40°±10°40°±10° has been observed when a 10 TW laser with frequencies either ω0ω0 (corresponding to 1 μm) or 2ω02ω0 was focused to an intensity of a few times 1018 W/cm21018W/cm2 on the surface of a thin film target. The protons, which originate from impurities on the front side of the target, are accelerated over a region extending into the target and exit out the backside in a direction normal to the target surface. Acceleration field gradients of ∼10 GeV/cm are inferred. The maximum proton energy for 2ω02ω0 can be explained by the charge-separation electrostatic-field acceleration due to “vacuum heating.” In other set of experiments when a deuterated polystyrene layer was deposited on a surface of a Mylar film and a 10B10B sample was placed behind the target, we observed the production of ∼ 105∼105 atoms of positron active isotope 11C11C from the nuclear reaction 10B(d,n)11C.10B(d,n)11C. © 2001 American Institute of Physics.
机译:当使用10 TW频率为ω0ω0的10 TW激光时,观察到准直质子束,能量高达10 MeV,总数为109,109,锥角限制在40°±10°40°±10°薄膜靶的表面上聚焦至数倍于1018 W / cm21018W / cm2的强度(1μm)或2ω02ω0。源自靶材前侧杂质的质子在延伸到靶材中的区域上加速,并在垂直于靶材表面的方向上从背面退出。推断出约10 GeV / cm的加速场梯度。 2ω02ω0的最大质子能量可以通过“真空加热”引起的电荷分离静电场加速来解释。在另一组实验中,当将氘化聚苯乙烯层沉积在Mylar膜的表面上并将10B10B样品放置在靶材后方时,我们观察到核反应10B产生了约105-105个正电子活性同位素11C11C( d,n)11C.10B(d,n)11C。 ©2001美国物理研究所。

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