Sütterlin Daniel, Erni Daniel, Schlott Volker, Sigg Hans, Jäckel Heinz, Murk Axel
PUBLICA Swiss Federal Pension Fund, CH-3000 Berne, Switzerland.
Rev Sci Instrum. 2010 Oct;81(10):104702. doi: 10.1063/1.3480997.
A spatial, electro-optical autocorrelation (EOA) interferometer using the vertically polarized lobes of coherent transition radiation (CTR) has been developed as a single-shot electron bunch length monitor at an optical beam port downstream the 100 MeV preinjector LINAC of the Swiss Light Source. This EOA monitor combines the advantages of step-scan interferometers (high temporal resolution) [D. Mihalcea et al., Phys. Rev. ST Accel. Beams 9, 082801 (2006) and T. Takahashi and K. Takami, Infrared Phys. Technol. 51, 363 (2008)] and terahertz-gating technologies [U. Schmidhammer et al., Appl. Phys. B: Lasers Opt. 94, 95 (2009) and B. Steffen et al., Phys. Rev. ST Accel. Beams 12, 032802 (2009)] (fast response), providing the possibility to tune the accelerator with an online bunch length diagnostics. While a proof of principle of the spatial interferometer was achieved by step-scan measurements with far-infrared detectors, the single-shot capability of the monitor has been demonstrated by electro-optical correlation of the spatial CTR interference pattern with fairly long (500 ps) neodymium-doped yttrium aluminum garnet (Nd:YAG) laser pulses in a ZnTe crystal. In single-shot operation, variations of the bunch length between 1.5 and 4 ps due to different phase settings of the LINAC bunching cavities have been measured with subpicosecond time resolution.
一种利用相干渡越辐射(CTR)的垂直偏振瓣的空间电光自相关(EOA)干涉仪,已被开发作为瑞士光源100 MeV预注入器直线加速器下游光束端口处的单次电子束团长度监测器。这种EOA监测器结合了步进扫描干涉仪(高时间分辨率)[D. Mihalcea等人,《物理评论快报:加速器与束流》9, 082801 (2006)以及T. Takahashi和K. Takami,《红外物理学与技术》51, 363 (2008)]和太赫兹选通技术[U. Schmidhammer等人,《应用物理B:激光与光学》94, 95 (2009)以及B. Steffen等人,《物理评论快报:加速器与束流》12, 032802 (2009)](快速响应)的优点,为利用在线束团长度诊断来调节加速器提供了可能性。虽然通过使用远红外探测器的步进扫描测量实现了空间干涉仪的原理验证,但监测器的单次测量能力已通过在ZnTe晶体中,将空间CTR干涉图案与相当长(500 ps)的掺钕钇铝石榴石(Nd:YAG)激光脉冲进行电光相关得以证明。在单次测量操作中,已以亚皮秒时间分辨率测量了由于直线加速器聚束腔不同相位设置导致的束团长度在1.5至4 ps之间的变化。