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    • 5. 发明授权
    • Circular accelerator
    • 圆形加速器
    • US07982416B2
    • 2011-07-19
    • US12277861
    • 2008-11-25
    • Hirofumi TanakaTakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • Hirofumi TanakaTakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • H05H11/00
    • H05H7/04
    • In a circular accelerator, a magnetic pole edge portion of a bending electromagnet into and from which a charged particle beam enters and exits is provided with endpacks. A first protrusion is provided at that part of each end pack which is radially outside the equilibrium orbit of a center energy beam, while a second protrusion is provided at that part of each end pack which is radially inside the equilibrium orbit of the center energy beam. The shapes of the first and second protrusions are set so that the betatron oscillation numbers of beams of different acceleration energies may be held constant or become linear to the energies. In case of emitting the charged particle beam out of the circular accelerator, the change of a tune attributed to the change of the beam orbit can be statically corrected, the tune is linearly changed, and an adjustment of the emission of the beam becomes easy.
    • 在圆形加速器中,带电粒子束进出的弯曲电磁体的磁极边缘部分设置有端口。 在中心能量束的平衡轨道的径向外侧的每个端部组件的该部分处设置有第一突出部,而在每个端部组件的位于中心能量束的平衡轨道的径向内侧的部分设置有第二突出部 。 第一和第二突起的形状被设定为使得不同加速度能量的光束的激光振荡数可以保持恒定,或者与能量保持一致。 在从圆形加速器发射带电粒子束的情况下,可以静态校正归因于光束轨道变化的曲调的变化,曲线线性地变化,并且光束的发射调节变得容易。
    • 7. 发明申请
    • CIRCULAR ACCELERATOR
    • 圆形加速器
    • US20090256501A1
    • 2009-10-15
    • US12277861
    • 2008-11-25
    • Hirofumi TANAKATakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • Hirofumi TANAKATakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • H05H7/00
    • H05H7/04
    • In a circular accelerator, a magnetic pole edge portion of a bending electromagnet into and from which a charged particle beam enters and exits is provided with endpacks. A first protrusion is provided at that part of each end pack which is radially outside the equilibrium orbit of a center energy beam, while a second protrusion is provided at that part of each end pack which is radially inside the equilibrium orbit of the center energy beam. The shapes of the first and second protrusions are set so that the betatron oscillation numbers of beams of different acceleration energies may be held constant or become linear to the energies. In case of emitting the charged particle beam out of the circular accelerator, the change of a tune attributed to the change of the beam orbit can be statically corrected, the tune is linearly changed, and an adjustment of the emission of the beam becomes easy.
    • 在圆形加速器中,带电粒子束进出的弯曲电磁体的磁极边缘部分设置有端口。 在中心能量束的平衡轨道的径向外侧的每个端部组件的该部分处设置有第一突出部,而在每个端部组件的位于中心能量束的平衡轨道的径向内侧的部分设置有第二突出部 。 第一和第二突起的形状被设定为使得不同加速度能量的光束的激光振荡数可以保持恒定,或者与能量保持一致。 在从圆形加速器发射带电粒子束的情况下,可以静态校正归因于光束轨道变化的曲调的变化,曲线线性地变化,并且光束的发射调节变得容易。
    • 9. 发明授权
    • Circular accelerator and operating method therefor
    • 圆形加速器及其操作方法
    • US08525448B2
    • 2013-09-03
    • US13368435
    • 2012-02-08
    • Hirofumi TanakaKazuo YamamotoNobuyuki HarunaYuehu PuKanji ShinkawaTakayuki Kashima
    • Hirofumi TanakaKazuo YamamotoNobuyuki HarunaYuehu PuKanji ShinkawaTakayuki Kashima
    • H05H13/00
    • H05H13/005H05H7/12H05H13/02
    • The circular accelerator comprises: a bending electromagnet that generates a bending magnetic field; a radio-frequency power source that generates a radio-frequency electric field in accordance with an orbital frequency of charged particles; a radio-frequency electromagnetic field coupling part connected to the radio-frequency power source; an acceleration electrode connected to the radio-frequency electromagnetic field coupling part; and an acceleration-electrode-opposing ground plate provided to form an acceleration gap between the plate itself and the acceleration electrode, for generating the radio-frequency electromagnetic field in an orbiting direction of the charged particles; wherein the bending electromagnet generates the bending magnetic field varying in such a way that the orbital frequency of the charged particles varies in a variation range of 0.7% to 24.7% with respect to an orbital frequency at the charged-particles' extraction portion, during a time of injection to extraction of the particles.
    • 圆形加速器包括:产生弯曲磁场的弯曲电磁体; 射频电源,其根据带电粒子的轨道频率产生射频电场; 连接到所述射频电源的射频电磁场耦合部; 连接到射频电磁场耦合部分的加速电极; 以及加速电极对置的接地板,其设置成在板本身和加速电极之间形成加速间隙,用于在带电粒子的运动方向上产生射频电磁场; 其中所述弯曲电磁体产生所述弯曲磁场,所述弯曲磁场以使得所述带电粒子的轨道频率相对于所述带电粒子提取部分的轨道频率在0.7%至24.7%的变化范围内变化的方式变化, 注射时间来提取颗粒。