Hanson C D, Castro M E, Russel D H
Anal Chem. 1989 Oct 1;61(19):2130-6. doi: 10.1021/ac00194a004.
The Fourier transform ion cyclotron resonance (FT-ICR) signal is produced by the coherent motion of a population of ions. The ability to produce a well-defined ion packet by excitation of an initially random ion ensemble is a major limiting factor of high mass FT-ICR. Ions must be both resonant and in phase with the applied radio frequency excitation field to be accelerated to radii suitable for detection by FT-ICR. Synchronization of the phase angles of an ensemble of ions occurs by off-resonant acceleration during frequency swept excitation. Results from computer-simulated ion trajectories suggest that phase synchronization of the ion packet prior to resonant excitation results in better spatial definition of the ion ensemble.
傅里叶变换离子回旋共振(FT-ICR)信号是由一群离子的相干运动产生的。通过激发初始随机离子系综来产生定义明确的离子包的能力是高质量FT-ICR的一个主要限制因素。离子必须与施加的射频激发场共振且同相,才能被加速到适合FT-ICR检测的半径。在频率扫描激发期间,通过非共振加速实现离子系综相角的同步。计算机模拟离子轨迹的结果表明,在共振激发之前离子包的相位同步会导致离子系综具有更好的空间定义。