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February 2, 2026JACOW0 citationsOpen Access

Measurements of the beam longitudinal properties in the Fermilab Linac

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RSRalitsa SharankovaASAlexander ShemyakinECErin Chen

Key Points

  • This research aims to quantify the longitudinal properties of the beam in the Fermilab Linac to optimize Booster performance.
  • Measured bunch length using a Bunch Shape Monitor (BSM) as a function of upstream cavity phase.
  • Recovered cavity gradient and beam phase from Beam Position Monitor readings.
  • Correlated BSM measurements with transverse beam size from a wire scanner.
  • Simulated interactions to connect measurements and deduce parameters.
  • Successfully reconstructed bunch parameters using BSM measurements.
  • Deduced longitudinal emittance and Courant-Snyder parameters from collected data.
  • Enabled a better understanding of how longitudinal and transverse measurements interact.

Abstract

The Fermilab Linac delivers 400\, MeV, 25\, mA H^- beam to a rapid cycling synchrotron called the Booster. Parameters of the Linac beam affect Booster performance and therefore quantifying them is important. The longitudinal bunch parameters are reconstructed using a Bunch Shape Monitor (BSM) installed in the middle of the Linac. For that, the bunch length is measured as a function of the phase of an upstream cavity and fitted to simulations. The cavity gradient and its phase with respect to the beam are recovered from readings of Beam Position Monitors. Since the cavity provides a significant transverse defocusing, the BSM measurements are correlated with transverse beam size measurements by a wire scanner. Simulations connect these three types of measurements, allowing to deduce the longitudinal emittance and Courant-Snyder parameters.

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Cite This Study

Sharankova et al. (2026) studied this question.

synapsesocial.com/papers/6980fd18c1c9540dea80ed4bhttps://doi.org/10.18429/jacow-napac2025-tup065
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