English

Vertical beam size measurement in the CESR-TA $e^+e^-$ storage ring using x-rays from synchrotron radiation

Instrumentation and Detectors 2014-03-21 v3 Accelerator Physics

Abstract

We describe the construction and operation of an x-ray beam size monitor (xBSM), a device measuring e+e^+ and ee^- beam sizes in the CESR-TA storage ring using synchrotron radiation. The device can measure vertical beam sizes of 10100 μ10-100~\mum on a turn-by-turn, bunch-by-bunch basis at e±e^\pm beam energies of 2 \sim2~GeV. At such beam energies the xBSM images x-rays of ϵ\epsilon\approx1-10 ~keV (λ0.11\lambda\approx 0.1-1 nm) that emerge from a hard-bend magnet through a single- or multiple-slit (coded aperture) optical element onto an array of 32 InGaAs photodiodes with 50 μ~\mum pitch. Beamlines and detectors are entirely in-vacuum, enabling single-shot beam size measurement down to below 0.1 ~mA (2.5×1092.5\times10^9 particles) per bunch and inter-bunch spacing of as little as 4 ~ns. At Eb=2.1E_{\rm b}=2.1 GeV, systematic precision of 1 μ\sim 1~\mum is achieved for a beam size of 12 μ\sim12~\mum; this is expected to scale as 1/σb\propto 1/\sigma_{\rm b} and 1/Eb\propto 1/E_{\rm b}. Achieving this precision requires comprehensive alignment and calibration of the detector, optical elements, and x-ray beam. Data from the xBSM have been used to extract characteristics of beam oscillations on long and short timescales, and to make detailed studies of low-emittance tuning, intra-beam scattering, electron cloud effects, and multi-bunch instabilities.

Keywords

Cite

@article{arxiv.1311.6769,
  title  = {Vertical beam size measurement in the CESR-TA $e^+e^-$ storage ring using x-rays from synchrotron radiation},
  author = {J. P. Alexander and A. Chatterjee and C. Conolly and E. Edwards and M. P. Ehrlichman and E. Fontes and B. K. Heltsley and W. Hopkins and A. Lyndaker and D. P. Peterson and N. T. Rider and D. L. Rubin and J. Savino and R. Seeley and J. Shanks and J. W. Flanagan},
  journal= {arXiv preprint arXiv:1311.6769},
  year   = {2014}
}

Comments

35 pages, 62 figures, version published by Nuclear Instruments and Methods in Physics Research A. Nuclear Instruments & Methods in Physics Research A (2014)

R2 v1 2026-06-22T02:15:23.120Z