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首页> 外文期刊>European journal of mass spectrometry >Two stability islands of quadrupole mass filter near q=0.9 created by auxiliary radio frequency voltage
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Two stability islands of quadrupole mass filter near q=0.9 created by auxiliary radio frequency voltage

机译:辅助射频电压在q = 0.9附近产生四极杆质量滤波器的两个稳定岛

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摘要

We report the numerical investigations of quadrupole mass filters concerning stability islands created by auxiliary radio frequency (RF) voltage with high and low frequencies near q=0.9. The islands are located along the q axis near boundary value q=0 908 with a low a parameter. The analysis is based upon the matrix method for stability diagram calculations and ion trajectory numerical simulation The trajectory of ion motions is generated using Runge-Kutta-Nystrom-Dormand-Prince (RK-N-DP) order integration The ion source model with Gaussian distribution of initial positions and transverse velocities is used. In RF-only operation mode, a resolution power of about R-01=600 without peak tails is achieved with a separation time of about 50 RF cycles. Relatively high resolution power of about 2000-3000 is observed in DC+RF separation mode with a low frequency auxiliary RF signal. The boundaries of stability diagram for additional RF voltage with high frequency are strongly diffused until the separation time is increased up to n=300 RF cycles The strong influence of phase shifts between main drive RF voltage and small auxiliary RF voltage on transmission is also examined In DC+RF mode, the period of transmission varies with phase shift of pi or one period of the main drive RF vottage: and in RF-only mode this period is pi/2.
机译:我们报告有关由辅助射频(RF)电压在q = 0.9附近产生高和低频的稳定岛的四极质量滤波器的数值研究。这些岛沿q轴位于边界值q = 0 908附近,且参数较低。该分析基于矩阵方法进行稳定性图计算和离子轨迹数值模拟。离子运动轨迹是使用Runge-Kutta-Nystrom-Dormand-Prince(RK-N-DP)阶积分生成的。具有高斯分布的离子源模型使用初始位置和横向速度。在仅RF的工作模式下,分离时间约为50个RF周期,可获得无峰尾的约R-01 = 600的分辨率。在DC + RF分离模式下,使用低频辅助RF信号可观察到大约2000-3000的相对高分辨率功率。强烈分散了高频附加射频电压的稳定性图的边界,直到分离时间增加到n = 300个射频周期为止。还检查了主驱动射频电压和小的辅助射频电压之间的相移对传输的强烈影响。在DC + RF模式下,传输周期随pi的相移或主驱动器RF电压的一个周期而变化:在仅RF模式下,此周期为pi / 2。

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