THEORY OF ION-CYCLOTRON RESONANCE MASS-SPECTROMETRY - RESONANT EXCITATION AND RADIAL EJECTION IN ORTHORHOMBIC AND CYLINDRICAL ION TRAPS

被引:92
作者
GROSSHANS, PB
MARSHALL, AG
机构
[1] OHIO STATE UNIV,DEPT CHEM,120 W 18TH AVE,COLUMBUS,OH 43210
[2] OHIO STATE UNIV,DEPT BIOCHEM,COLUMBUS,OH 43210
来源
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY AND ION PROCESSES | 1990年 / 100卷
关键词
D O I
10.1016/0168-1176(90)85083-E
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
Most prior treatments of ion cyclotron resonance (ICR) radiofrequency excitation have been based on a uniform electric field (infinitely extended electrode) approximation. In this paper, we develop analytical representations (based on Taylor series or Fourier series expansions) for the radiofrequency excitation potential in finite orthorhombic traps of square cross-section. The rate of increase of ICR orbital radius in response to single-frequency on-resonance excitation was then integrated for these and other prior models to obtain the onset of radial ejection. Both present methods (and prior related methods by Rempel [Int. J. Mass Spectrom. Ion Processes, 70 (1986) 163] and van der Hart and van de Guchte [Int. J. Mass Spectrom. Ion Processes, 82 (1988) 17]) are nearly indistinguishable for ion cyclotron orbital radius out to about 40% of the maximum radius allowed by the trap, and diverge thereafter. The Fourier series method is highly accurate all the way out to the trap boundary for ions in the midplane of the trap; because the transverse component of the excitation field decreases away from that midplane, the Fourier series method represents an upper limit to the actual excited ICR orbital radius, and should thus accurately predict the onset of radial ejection. We find that the experimentally observed onset of ion ejection occurs at about 1.3 times the excitation voltage-duration product calculated from the uniform-field model, in excellent agreement with the Fourier series prediction. Moreover, since the experimentally observed onset of ejection is found to be essentially independent of trapping voltage and ion mass-to-charge ratio, m/z, the ejection onset can be interpreted as radial (rather than axial) ejection. The present theories are developed in full algebraic detail for a cubic ion trap. Extension of either method to orthorhombic traps of arbitrary relative dimensions is straightforward; explicit solutions are given for the Taylor series model for orthorhombic traps of square cross-section. In addition, the Fourier series method is extendable to right circular cylindrical traps of arbitrary aspect ratio; all relevant analytical expressions are listed in the text. Finally, for a given excitation voltage × duration product, the present results imply that the excitation period should exceed several ICR orbital periods in order to minimize magnetron radius; this constraint is especially important for ions of high m/z. © 1990.
引用
收藏
页码:347 / 379
页数:33
相关论文
共 33 条
  • [1] EJECTION OF LOW-MASS CHARGED-PARTICLES IN HIGH MAGNETIC-FIELD ICR SPECTROMETERS
    ALLEMANN, M
    KOFEL, P
    KELLERHALS, H
    WANCZEK, KP
    [J]. INTERNATIONAL JOURNAL OF MASS SPECTROMETRY AND ION PROCESSES, 1987, 75 (01): : 47 - 54
  • [2] ON PRODUCTION OF POLARIZED ELECTRON BEAMS BY SPIN EXCHANGE COLLISIONS
    BYRNE, J
    FARAGO, PS
    [J]. PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON, 1965, 86 (552P): : 801 - &
  • [3] PHASE-MODULATED STORED WAVE-FORM INVERSE FOURIER-TRANSFORM EXCITATION FOR TRAPPED ION MASS-SPECTROMETRY
    CHEN, L
    WANG, TCL
    RICCA, TL
    MARSHALL, AG
    [J]. ANALYTICAL CHEMISTRY, 1987, 59 (03) : 449 - 454
  • [4] FREQUENCY-SWEEP FOURIER-TRANSFORM ION-CYCLOTRON RESONANCE SPECTROSCOPY
    COMISARO.MB
    MARSHALL, AG
    [J]. CHEMICAL PHYSICS LETTERS, 1974, 26 (04) : 489 - 490
  • [5] FOURIER-TRANSFORM ION-CYCLOTRON RESONANCE SPECTROSCOPY
    COMISAROW, MB
    MARSHALL, AG
    [J]. CHEMICAL PHYSICS LETTERS, 1974, 25 (02) : 282 - 283
  • [7] ZETA-AXIS OSCILLATION SIDEBANDS IN FT ICR MASS-SPECTRA
    DELONG, SE
    MITCHELL, DW
    CHERNIAK, DJ
    HARRISON, TM
    [J]. INTERNATIONAL JOURNAL OF MASS SPECTROMETRY AND ION PROCESSES, 1989, 91 (03): : 273 - 282
  • [8] DUNBAR RC, 1989, COMMUNICATION
  • [9] DUNBAR RC, 1984, INT J MASS SPECTROM, V70, P163
  • [10] SIMPLE AND ACCURATE DETERMINATION OF ION TRANSLATIONAL ENERGY IN ION-CYCLOTRON RESONANCE MASS-SPECTROSCOPY
    GROSSHANS, PB
    SHIELDS, P
    MARSHALL, AG
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (03) : 1275 - 1277