[1] NING W, DAI D, ZHANG Y, et al. Transition from symmetric discharge to asymmetric discharge in a short gap helium dielectric barrier discharge[J]. Physics of Plasmas,2017, 24(7): 073509.DOI:10.1063/1.4990707. [2] HASAN M I, WALSH J L. Influence of gas flow velocity on the transport of chemical species in an atmospheric pressure air plasma discharge[J]. Applied Physics Letters,2017, 110(13): 134102.DOI:10.1063/1.4979178. [3] MASSINES F, GHERARDI N, NAUDEE N, et al. Recent advances in the understanding of homogeneous dielectric barrier discharges [J]. The European Physical Journal Applied Physics, 2009, 47: 22805.DOI:10.1051/epjap/2009064. [4] PARK G Y, PARK S J, CHOI M Y, et al. Atmospheric-pressure plasma sources for biomedical applications [J]. Plasma Sources Sci Technol, 2012, 21: 043001.DOI:10.1088/0963-0252/21/4/043001. [5] MASSINES F, RABEHI A, DECOMPS P, et al. Experimental and theoretical study of a glow discharge at atmospheric pressure controlled by dielectric barrier [J]. J Appl Phys, 1998, 83: 2950-2957.DOI:10.1063/1.367051. [6] RADU I,WERTHEIMER M R. Frequency and voltage dependence of glow and pseudoglow discharges in helium under atmospheric pressure [J]. IEEE Tanscations on Plasma Science, 2003, 31(6): 1363-1377.DOI:10.1109/TPS.2003.820970. [7] SHIN J, RAJA L L. Dynamics of pulse phenomena in helium dielectric-barrieratmospheric-pressure glow discharges [J]. J Appl Phys, 2003, 94(12): 7408-7415.DOI:10.1063/1.1625414. [8] ZHANG Y, GU B, PENG X, et al. Multiple current peaks and mode conversion of atmospheric pressure glow dielectric barrier discharge in helium [J]. Thin Solid Films, 2008, 516: 7547-7554.DOI:10.1016/j.tsf.2008.05.020. [9] 郝艳捧,阳林,涂恩来,等.实验研究大气压多脉冲辉光放电的模式和机理[J].物理学报,2010, 59(4):2610-2615. HAO Y P, YANG L, TU E L, et al. Experimental study on mode and mechanism of multi-pulse atmospheric-pressure glow discharges [J]. Acta Phys Sin, 2010, 59(4):2610-2615. [10] MANGOLINI L, ORLOV K, KORTSHAGEN U. Radial structure of a low-frequency atmospheric-pressure glow discharge in helium [J]. Appl Phys Lett, 2002, 80(10): 1722-1724. DOI:10.1063/1.1458684. [11] AKISHEV Y S, DEMYANNOV A V, KARALNIK V B,et al.Pulsed Regime of the Diffusive Mode of a Barrier Discharge in Helium[J].Plasma Phys,Rep,2001,27:164-171.DOI:10.1134/1.1348495. [12] GOLUBOVSKII Y, MAIOROV V, BEHNKE J, et al. Modelling of the homogeneous barrier discharge in helium at atmospheric pressure [J]. J Phys D: Appl Phys,2003, 36: 39-49.DOI:10.1088/0022-3727/36/1/306. [13] YUAN X, SHIN J, RAJA L L. One-dimensional simulation of multi pulse phenomena in dielectric-barrier atmospheric-pressure glow discharges [J]. Vacuum, 2006, 80: 1199-1205.DOI:10.1016/j.vacuum.2006.01.063. [14] 王艳辉,王德真. 大气压多脉冲均匀介质阻挡放电的研究[J]. 物理学报,2005,54(3):1295-1300. WANG Y H, WANG D Z. Study on homogenous multiple-pulse barrier discharge at atmospheric pressure [J]. Acta Physica Sinica, 2005, 54(3): 1295-1300.DOI:10.3321/j.issn:1000-3290.2005.03.051. [15] 郝艳捧,刘耀阁,涂恩来.大气压氦气介质阻挡多脉冲辉光放电的光学演化过程[J].高电压技术,2012, 38(1):188-193. HAO Y P, LIU Y G, TU E L. Optical development of a multi-pulse dielectric barrier glow discharge in atmospheric-pressure helium [J]. High Voltage Engineering, 2012, 38(1): 188-193.DOI:10.3969/j.issn.1003-6520.2012.01.026. [16] 宋新新,谭振宇,陈波,等. 放电参数对大气压多脉冲介质阻挡放电特性的影响[J].高电压技术,2011, 37(7):1793-1797. SONG X X, TAN Z Y, CHEN B, et al. Effects of electrical parameters on multiple-pulse dielectric barrier discharge at atmospheric pressure [J]. High Voltage Engineering, 2011, 37(7): 1793-1797.DOI:10.13336/j.1003-6520.hve.2011.07.006. [17] WANG X H, YANG A J, RONG M Z, et al. Numerical study on atmospheric pressure DBD in Helium: Single-breakdown and Multi-breakdown discharges [J]. Plasma Science and Technology, 2011, 13(6): 724-729.DOI:10.1088/1009-0630/13/6/17. [18] CARLSSON J, KHRABROV A, KAGANOVICH I, et al. Validation and benchmarking of two particle-in-cell codes for a glow discharge[J]. Plasma Sources Science and Technology,2017, 26(1): 014003.DOI:10.1088/0963-0252/26/1/014003. [19] YUAN X, RAJA L L. Computational study of capacitively coupled high-pressure glow discharges in helium [J]. IEEE Trans Plasma Sci, 2003, 31(4): 495-503.DOI:10.1109/TPS.2003.815479. [20] LAZAROU C, BELMONTE T, CHIPER A S, et al. Numerical modelling of the effect of dry air traces in a helium parallel plate dielectric barrier discharge[J]. Plasma Sources Science and Technology,2016, 25(5): 55023.DOI: 10.1088/0963-0252/25/5/055023. [21] KIM H C, IZA F, YANG S S, et al. Particle and fluid simulations of low-temperature plasma discharges: benchmarks and kinetic effects[J]. Journal of Physics D: Applied Physics,2005, 38(19): R283-R301.DOI: 10.1063/1.3688875. [22] 毛志国,冉俊霞,尹增谦,等.不同气压下氩气介质阻挡辉光放电的特性研究[J].河北大学学报(自然科学版),2004,24(6): 589-593. MAO Z G, RAN J X, YIN Z Q, et al. Study on characteristics of dielectric barrier glow discharge in argon at different pressure [J]. Journal of Hebei University(Natural Science Edition), 2004,24(6): 589-593. |