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193 related items for PubMed ID: 26924210
21. Laser-induced fluorescence from N2(+) ions generated by a corona discharge in ambient air. Konthasinghe K, Fitzmorris K, Peiris M, Hopkins AJ, Petrak B, Killinger DK, Muller A. Appl Spectrosc; 2015 Sep; 69(9):1042-6. PubMed ID: 26414524 [Abstract] [Full Text] [Related]
22. Discharge Regimes Transition and Characteristics Evolution of Nanosecond Pulsed Dielectric Barrier Discharge. Zhang L, Yang D, Wang S, Jia Z, Yuan H, Zhao Z, Wang W. Nanomaterials (Basel); 2019 Sep 26; 9(10):. PubMed ID: 31561618 [Abstract] [Full Text] [Related]
23. [Optical diagnosis of large area homogenous dielectric barrier discharge in nitrogen at atmospheric pressure]. Jia L, Peng XW, Yang DZ, Wang WC, Zheng S. Guang Pu Xue Yu Guang Pu Fen Xi; 2013 Jan 26; 33(1):40-3. PubMed ID: 23586220 [Abstract] [Full Text] [Related]
24. Experimental Study of Coaxial Cylinder Dielectric Barrier Discharge in Ar/NH3 Mixtures under the Atmosphere-Pressure. Li YQ, Bu DC, Di LB, Zhang XL, Liu ZS, Li XH. Guang Pu Xue Yu Guang Pu Fen Xi; 2015 Mar 26; 35(3):765-71. PubMed ID: 26117894 [Abstract] [Full Text] [Related]
25. [Measurement of rotational and vibrational temperatures in arc plasma based on the first negative system of N2+ (B(2) sigma --> X(2) sigma)]. Tu X, Yan JH, Ma ZY, Li XD, Pan XC, Cen KF, Cheron B. Guang Pu Xue Yu Guang Pu Fen Xi; 2006 Dec 26; 26(12):2161-5. PubMed ID: 17361699 [Abstract] [Full Text] [Related]
26. Time-resolved CRDS measurements of the N2(A3Sigma(u)+) density produced by nanosecond discharges in atmospheric pressure nitrogen and air. Stancu GD, Janda M, Kaddouri F, Lacoste DA, Laux CO. J Phys Chem A; 2010 Jan 14; 114(1):201-8. PubMed ID: 19957990 [Abstract] [Full Text] [Related]
27. [Study on homogeneity of low-pressure air dielectric barrier discharge by optical emission spectrum]. Dong LF, Wang S, Liu WY, Yang YJ, Yue H, Xiao H. Guang Pu Xue Yu Guang Pu Fen Xi; 2011 Feb 14; 31(2):328-30. PubMed ID: 21510373 [Abstract] [Full Text] [Related]
28. [Investigation of a jet operated in atmospheric pressure argon by optical emission spectroscopy]. Li XC, Bao WT, Jia PY, Di C, Yuan N. Guang Pu Xue Yu Guang Pu Fen Xi; 2014 Jun 14; 34(6):1469-72. PubMed ID: 25358147 [Abstract] [Full Text] [Related]
29. Collision-mediated ultrafast decay of N2 fluorescence during fs-laser-induced filamentation. Ran P, Li G, Liu T, Hou H, Luo SN. Opt Express; 2019 Jul 08; 27(14):19177-19187. PubMed ID: 31503681 [Abstract] [Full Text] [Related]
30. Enhanced Coherent Emission from Ionized Nitrogen Molecules by Femtosecond Laser Pulses. Zheng W, Miao Z, Zhang L, Wang Y, Dai C, Zhang A, Jiang H, Gong Q, Wu C. J Phys Chem Lett; 2019 Nov 07; 10(21):6598-6603. PubMed ID: 31603688 [Abstract] [Full Text] [Related]
31. [A Time-Spatial Resolvable High Speed Spectrograph and Its Application on Spectrum Measurement of a Nanosecond Pulsed Underwater Spark Discharge]. Niu ZW, Yan XF, Li SH, Wen XQ, Liu JY. Guang Pu Xue Yu Guang Pu Fen Xi; 2015 Oct 07; 35(10):2911-5. PubMed ID: 26904843 [Abstract] [Full Text] [Related]
32. Optical emission spectroscopy measurement of plasma parameters in a nanosecond pulsed spark discharge for CO2/CH4 dry reforming. Zhang S, Zeng X, Bai H, Zhang C, Shao T. Spectrochim Acta A Mol Biomol Spectrosc; 2022 Feb 15; 267(Pt 2):120590. PubMed ID: 34824005 [Abstract] [Full Text] [Related]
33. Predissociation of the B Σu-3 state of S2: A coupled-channel model. Lewis BR, Gibson ST, Stark G, Heays AN. J Chem Phys; 2018 Jun 28; 148(24):244303. PubMed ID: 29960364 [Abstract] [Full Text] [Related]
34. Ramsey interferometry through coherent A2Πu-X2Σg+-B2Σu+ coupling and population transfer in N2+ air laser. Li Z, Kuan YH, Mu X, Miao Z, Wu C, Liao WT. Opt Lett; 2020 Dec 15; 45(24):6587-6590. PubMed ID: 33325846 [Abstract] [Full Text] [Related]
35. [Determination of electric field distribution in dielectric barrier surface glow discharge by spectroscopic method]. Li XC, Jia PY, Liu ZH, Li LC, Dong LF. Guang Pu Xue Yu Guang Pu Fen Xi; 2008 Dec 15; 28(12):2741-4. PubMed ID: 19248473 [Abstract] [Full Text] [Related]
36. Photodissociation of S2 (X3Σg-, a1Δg, and b1Σg+) in the 320-205 nm Region. Sun ZF, Farooq Z, Parker DH, Martin PJJ, Western CM. J Phys Chem A; 2019 Aug 15; 123(32):6886-6896. PubMed ID: 31322887 [Abstract] [Full Text] [Related]
37. [Study of characteristics of excited O atom generated in multi-needle-to-plate corona discharge by emission spectroscopy]. Ge H, Yan L, Mi D, Zhu YM, Zhang L. Guang Pu Xue Yu Guang Pu Fen Xi; 2012 Apr 15; 32(4):886-9. PubMed ID: 22715745 [Abstract] [Full Text] [Related]
38. Photodissociation Dynamics of Nitrous Oxide near 145 nm: The O(1S0) and O(3P J=2,1,0) Product Channels. Yuan D, Yu S, Xie T, Chen W, Wang S, Tan Y, Wang T, Yuan K, Yang X, Wang X. J Phys Chem A; 2018 Mar 15; 122(10):2663-2669. PubMed ID: 29481080 [Abstract] [Full Text] [Related]
39. Vector correlation between the alignment of reactant N2 (A 3Σu+) and the alignment of product NO (A 2Σ+) rotation in the energy transfer reaction of aligned N2 (A 3Σu+) + NO (X 2Π) → NO (A 2Σ+) + N2 (X 1Σg+). Ohoyama H. J Chem Phys; 2013 Dec 21; 139(23):234308. PubMed ID: 24359368 [Abstract] [Full Text] [Related]
40. The X+ 2Πg, A+ 2Πu, B+ 2Δu, and a+ 4Σu(-) electronic states of Cl2(+) studied by high-resolution photoelectron spectroscopy. Mollet S, Merkt F. J Chem Phys; 2013 Jul 21; 139(3):034302. PubMed ID: 23883022 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]