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    • 1. 发明申请
    • LASER ACTIVATED MAGNETIC FIELD MANIPULATION OF LASER DRIVEN ION BEAMS
    • 激光激光磁场操纵激光驱动离子束
    • WO2013114351A2
    • 2013-08-08
    • PCT/IL2013/000010
    • 2013-01-31
    • HIL APPLIED MEDICAL LTD.
    • NAHUM, Eyal GadEISENMANN, ShmuelZIGLER, ArieBRINK-DANAN, SagiKATZIR, Yiftach
    • G21K5/02
    • H01J27/022G21B3/006G21K1/093H01J27/18
    • A system for generating pulses of charged particles, comprising a high intensity pulsed laser emitting laser pulses which, when impacting a target, generate pulses of charged particles. The particles passes through an electromagnet energized by a low inductance current feed incorporating a light activated switch to turn the energizing current on and off. Part of the light of the laser pulse is directed onto the light activated switch, such that the magnetic field is optically synchronized with the generated pulses of charged particles. This enables energizing the magnet only during passage of the pulses, such that it is lighter and more energy efficient than prior art systems using CW electromagnets. Synchronization also enables selection of charged particles having a predetermined range of particle energy, by timing activation of the magnetic field such that it diverts onto a selected beam path only the particles having the predetermined range of energies.
    • 一种用于产生带电粒子的脉冲的系统,包括发射激光脉冲的高强度脉冲激光脉冲,其在撞击目标时产生带电粒子的脉冲。 颗粒通过一个电磁铁通过一个低电感电流馈电激励,其中包含一个光启动开关,以使通电电流开启和关闭。 激光脉冲的一部分光被引导到光激活的开关上,使得磁场与产生的带电粒子的脉冲光学同步。 这使得仅在脉冲通过期间激励磁体,使得它比使用CW电磁体的现有技术系统更轻且更节能。 同步还可以通过定时激活磁场使得能够选择具有预定范围的粒子能量的带电粒子,使得其仅转移到具有预定能量范围的粒子的选定光束路径上。
    • 4. 发明申请
    • LASER ACTIVATED MAGNETIC FIELD MANIPULATION OF LASER DRIVEN ION BEAMS
    • 激光激励磁场对激光驱动离子束的激励
    • WO2013114351A3
    • 2013-12-27
    • PCT/IL2013000010
    • 2013-01-31
    • HIL APPLIED MEDICAL LTD
    • NAHUM EYAL GADEISENMANN SHMUELZIGLER ARIEBRINK-DANAN SAGIKATZIR YIFTACH
    • H01J23/087
    • H01J27/022G21B3/006G21K1/093H01J27/18
    • A system for generating pulses of charged particles, comprising a high intensity pulsed laser emitting laser pulses which, when impacting a target, generate pulses of charged particles. The particles passes through an electromagnet energized by a low inductance current feed incorporating a light activated switch to turn the energizing current on and off. Part of the light of the laser pulse is directed onto the light activated switch, such that the magnetic field is optically synchronized with the generated pulses of charged particles. This enables energizing the magnet only during passage of the pulses, such that it is lighter and more energy efficient than prior art systems using CW electromagnets. Synchronization also enables selection of charged particles having a predetermined range of particle energy, by timing activation of the magnetic field such that it diverts onto a selected beam path only the particles having the predetermined range of energies.
    • 一种用于产生带电粒子脉冲的系统,该系统包括发射激光脉冲的高强度脉冲激光,该激光脉冲在撞击目标时产生带电粒子的脉冲。 颗粒通过一个由低电感电流馈电激励的电磁体,该低电感电流馈电包含一个光启动开关以打开和关闭激励电流。 激光脉冲的部分光被引导到光激活开关上,使得磁场与产生的带电粒子脉冲在光学上同步。 这使得仅在脉冲通过期间激励磁体,使得其比使用CW电磁体的现有技术系统更轻且更节能。 通过对磁场进行定时激励,同步还使得能够选择具有预定范围的粒子能量的带电粒子,使得它仅将具有预定能量范围的粒子转移到选定的射束路径上。