Enhancing the mass resolving power of FRIB’s proposed high-voltage MR-ToF mass separator and spectrometer: addressing non-ideal conditions
arXiv:2510.11741v1 Announce Type: new
Abstract: Multi-reflection time-of-flight mass separators and spectrometers (MR-ToF MSs) are indispensable tools at radioactive ion beam (RIB) facilities. These electrostatic ion beam traps act as highly selective mass separators and high-precision mass spectrometers for rare and exotic nuclei. When well-tuned and designed to minimize higher-order flight-time aberrations, state-of-the-art MR-ToF MSs approach, and slightly exceed, mass resolving powers of ( m / Delta m = 10^6 ). Achieving ( m / Delta m > 3 cdot 10^6 ) would provide the ability to resolve ( >90% ) of all known isomeric states with half-lives above 10~text{ms}. However, the ability to mass separate in all practical setups is limited by non-ideal conditions which place such resolving powers out of reach. To this end, we present a simulated analysis of these conditions in the newly proposed high-voltage MR-ToF MS for the Facility for Rare Isotope Beams (FRIB). It is expected to store ions at 30~text{keV} beam energy and increase ion throughput by two orders of magnitude compared to current devices. Existing efforts to mitigate the effects of non-ideal conditions employed for current MR-ToF devices storing ions at (
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