Chinese Journal of Quantum Electronics, Volume. 42, Issue 2, 229(2025)
Performance of radio frequency source based on electronic tube oscillation circuit for ion traps
[1] Willitsch S. Coulomb-crystallised molecular ions in traps: Methods, applications, prospects[J]. International Reviews in Physical Chemistry, 31, 175-199(2012).
[2] Siverns J D, Simkins L R, Weidt S et al. On the application of radio frequency voltages to ion traps via helical resonators[J]. Applied Physics B, 107, 921-934(2012).
[3] Batra N, Panja S, De S et al. Design and construction of a helical resonator for delivering radio frequency to an ion trap[J]. MAPAN, 32, 193-198(2017).
[4] Guo T, Liu P L, Lee C H. New designed helical resonator to improve measurement accuracy of magic radio frequency[J]. Chinese Physics B, 31, 093201(2022).
[5] Jones R M, Gerlich D, Anderson S L. Simple radio-frequency power source for ion guides and ion traps[J]. Review of Scientific Instruments, 68, 3357-3362(1997).
[6] Chang B T, Mitchell T B. Frequency stabilized radio-frequency generator for driving ion traps and other capacitive loads[J]. Review of Scientific Instruments, 77, 063101(2006).
[7] Pan Y, Li H X, He S G et al. Trapping and micromotion compensation of ions in segmented linear ion trap[J]. Chinese Journal of Quantum Electronics, 35, 424-431(2018).
[8] Jau Y Y, Benito F M, Partner H et al. Low power high-performance radio frequency oscillator for driving ion traps[J]. Review of Scientific Instruments, 82, 023118(2011).
[9] Noriega J R, García-Delgado L A, Gómez-Fuentes R et al. Low power RF amplifier circuit for ion trap applications[J]. Review of Scientific Instruments, 87, 094704(2016).
[10] Li M, Zhang Y, Zhang Q Y et al. Investigation of spatial structure and sympathetic cooling in the 9Be+⁃40Ca+ bi-component Coulomb crystals[J]. Chinese Physics B, 32, 036402(2023).
[11] Lyu J W, Mou H, Liu Y N et al. Development of a miniaturized ratio frequency power for quadrupole mass spectrometer[J]. Journal of Chinese Mass Spectrometry Society, 41, 547-555(2020).
[12] Franceschi P, Penasa L, Ascenzi D et al. A simple and cost-effective high voltage radio frequency driver for multipolar ion guides[J]. International Journal of Mass Spectrometry, 265, 224-229(2007).
[13] Jones R M, Anderson S L. Simplified radio-frequency generator for driving ion guides, traps, and other capacitive loads[J]. Review of Scientific Instruments, 71, 4335-4337(2000).
[14] Zhang Q X, Wang Y R, Zhu C H et al. Precision measurements with cold atoms and trapped ions[J]. Chinese Physics B, 29, 093203(2020).
[15] Gao K L. Optical frequency standards based on trapped ions[J]. Physics, 39, 604-611(2010).
[16] Makdissi A, Vernotte F, De Clercq E. Stability variances: A filter approach[J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 57, 1011-1028(2010).
[17] Li H X, Zhang Y, He S G et al. Determination of the geometric parameters and of a linear Paul trap[J]. Chinese Journal of Physics, 60, 61-67(2019).
[18] Wu Y W, Yang B, Xiao S H et al. Atomic clock models and frequency stability analyses[J]. Geomatics and Information Science of Wuhan University, 44, 1226-1232(2019).
[19] Li L, Li Z, Hua X et al. Dynamic laser ablation loading of a linear Paul trap[J]. Journal of Physics D: Applied Physics, 57, 315205(2024).
Get Citation
Copy Citation Text
Huaxuan XU, Zhiyuan AO, Lin LI, Zi LI, Shengguo HE, Xin TONG. Performance of radio frequency source based on electronic tube oscillation circuit for ion traps[J]. Chinese Journal of Quantum Electronics, 2025, 42(2): 229
Category:
Received: Aug. 3, 2023
Accepted: --
Published Online: Apr. 1, 2025
The Author Email: Zi LI (lizi@wipm.ac.cn), Shengguo HE (hesg@wipm.ac.cn)