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physics.acc-ph2025

IOTA Experiment for Proton Pulse Compression at Extreme Space-Charge

Benjamin Simons, Nilanjan Banerjee, Jeffrey Eldred +1

The longitudinal compression of high-intensity, space-charge-dominated proton bunches is a critical requirement for future proton-driven muon colliders. We propose a proton bunch c…

physics.acc-ph2025

Proton Dynamics Scenarios in the Integrable Optics Test Accelerator (IOTA) at Fermilab

N. Banerjee, A. Romanov, G. Stancari +1

The Integrable Optics Test Accelerator (IOTA) at Fermilab provides a versatile platform for studying the interplay of space-charge, impedance, and non-linear optics in high-intensi…

physics.acc-ph20231 cited

Experiments On Electron Cooling and Intense Space-charge at IOTA

N. Banerjee, G. Stancari, M. K. Bossard +3

The Integrable Optics Test Accelerator at Fermilab will explore beam dynamics in a ring with intense space-charge using 2.5 MeV proton beams with an incoherent tune shift approachi…

physics.acc-ph2023

Thermionic Sources for Electron Cooling at IOTA

M. K. Bossard, J. Brandt, Y. -K. Kim +5

We are designing and fabricating two new thermionic sources of magnetized electrons for use in the electron lens project in the Integrable Optics Test Accelerator (IOTA) at Fermila…

physics.acc-ph2023

Commissioning of the Low Energy Electron Gun Test Stand at the University of Chicago

S. Kladov, M. Bossard, J. Brandt +5

We built a test stand for evaluating the performance of the thermionic electron sources for the electron lens project at the Integrable Optics Test Accelerator (IOTA) in Fermilab.…

physics.acc-ph2022

Electron Cooling Experiment for Proton Beams with Intense Space-charge in IOTA

N. Banerjee, M. K. Bossard, J. Brandt +4

Electron cooling as a method of creating intense ion beams has a practical upper limit when it comes to the peak phase space density of ion beams which can be achieved in practice.…