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首页> 外文期刊>Physical Review. Accelerators and Beams >Demonstration of low emittance in the Cornell energy recovery linac injector prototype
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Demonstration of low emittance in the Cornell energy recovery linac injector prototype

机译:康奈尔能量回收直线加速器注射器原型的低发射率演示

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We present a detailed study of the six-dimensional phase space of the electron beam produced by the Cornell Energy Recovery Linac Photoinjector, a high-brightness, high repetition rate (1.3 GHz) DC photoemission source designed to drive a hard x-ray energy recovery linac (ERL). A complete simulation model of the injector has been constructed, verified by measurement, and optimized. Both the horizontal and vertical 2D transverse phase spaces, as well as the time-resolved (sliced) horizontal phase space, were simulated and directly measured at the end of the injector for 19 and 77 pC bunches at roughly 8 MeV. These bunch charges were chosen because they correspond to 25 and 100 mA average current if operating at the full 1.3 GHz repetition rate. The resulting 90% normalized transverse emittances for $19ext{ }(77)ext{ }ext{ }mathrm{pC}/mathrm{bunch}$ were $0.23ifmmodepmelseextpmi{}0.02$ $(0.51ifmmodepmelseextpmi{}0.04)ext{ }ext{ }ensuremath{mu}mathrm{m}$ in the horizontal plane, and $0.14ifmmodepmelseextpmi{}0.01$ $(0.29ifmmodepmelseextpmi{}0.02)ext{ }ext{ }ensuremath{mu}mathrm{m}$ in the vertical plane, respectively. These emittances were measured with a corresponding bunch length of $2.1ifmmodepmelseextpmi{}0.1$ $(3.0ifmmodepmelseextpmi{}0.2)ext{ }ext{ }mathrm{ps}$, respectively. In each case the rms momentum spread was determined to be on the order of ${10}^{ensuremath{-}3}$. Excellent overall agreement between measurement and simulation has been demonstrated. Using the emittances and bunch length measured at $19ext{ }ext{ }mathrm{pC}/mathrm{bunch}$, we estimate the electron beam quality in a 1.3 GHz, 5 GeV hard x-ray ERL to be at least a factor of 20 times better than that of existing storage rings when the rms energy spread of each device is considered. These results represent a milestone for the field of high-brightness, high-current photoinjectors.
机译:我们对康奈尔能量回收直线加速器光电注入器产生的电子束的六维相空间进行了详细研究,康奈尔能量回收直线加速器是一种旨在驱动硬X射线能量回收的高亮度,高重复频率(1.3 GHz)直流光发射源。直线加速器(ERL)。已经构建了喷油器的完整仿真模型,通过测量进行了验证和优化。对水平和垂直二维横向相空间以及时间分辨(切片)水平相空间进行了仿真,并在注入器末端直接对大约8 MeV的19和77 pC束进行了测量。选择这些束电荷的原因是,如果以完整的1.3 GHz重复频率工作,它们对应的平均电流为25和100 mA。 $ 19 text {}(77) text {} text {} mathrm {pC} / mathrm {bunch} $的90%归一化横向发射率为$ 0.23 ifmmode pm else textpm fi {} 0.02 $ $(0.51 ifmmode pm else textpm fi {} 0.04) text {} text {} ensuremath { mu} mathrm {m} $在水平面中,$ 0.14 ifmmode pm else textpm fi {} 0.01 $ $($ 0.29 ifmmode pm else textpm fi {} 0.02) text {} text {} ensuremath { mu} mathrm {m} $飞机。用相应的束长度$ 2.1 ifmmode pm else textpm fi {} 0.1 $ $(3.0 ifmmode pm else textpm fi {} 0.2) text {} text {}测量这些发射率 mathrm {ps} $。在每种情况下,均方根动量点差都确定为大约$ {10} ^ { ensuremath {-} 3} $。已证明测量和仿真之间具有出色的整体一致性。使用在$ 19 text {} text {} mathrm {pC} / mathrm {bunch} $处测得的发射率和束长度,我们估算出1.3 GHz,5 GeV硬X射线ERL的电子束质量为考虑到每个设备的均方根能量分布,至少比现有存储环好20倍。这些结果代表了高亮度,高电流光注入器领域的一个里程碑。

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