Modeling of a linear ion trap with driving rectangular waveforms

Author:

Ivanov A. I.1,Sysoev A. A.2,Konenkov A. N.1,Konenkov N. V.23ORCID

Affiliation:

1. Ryazan State University named after S.A. Esenin Ryazan Russia

2. Laboratory of Applied Ion Physics and Mass Spectrometry National Research Nuclear University MEPhI (Moscow Engineering Physics Institute) Moscow Russia

3. Laboratory of Quadrupole Mass Spectrometry Ryazan State University named after S.A. Esenin Ryazan Russia

Abstract

AbstractWe consider the operation of a digital linear ion trap with resonant radial ejection. A sequence of rectangular voltage pulses with a dipole resonance signal is applied to the trap electrodes. The periodic waveform is piecewise constant, has zero mean, and is determined by an asymmetry parameter : one value is taken on interval and another on , where is the RF period. Ion mass scanning is performed by varying the asymmetry parameter and amplitude of the negative pulse part with time. The ion oscillation frequencies and acceptance of the linear trap are calculated. The dependence of the ion mass to charge ratio on the parameter is . The maximum value is about  kDa for typical parameters of the linear trap: frequency 0.5 MHz, rod radius 4 mm, and negative pulse amplitude 1 kV. The dipolar excitation frequency is 0.125 MHz at which the LIT acceptance is maximal.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

Wiley

Reference17 articles.

1. The fundamentals of theory of quadrupole mass spectrometry with pulsed voltage waveform;Sheretov EP;J Tech Phys,1972

2. A digital ion trap mass spectrometer coupled with atmospheric pressure ion sources

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