^Williams، P. F.؛ Peterkin، F. E. (1990). "Trigatron Spark Gaps". Gas Discharge Closing Switches. Boston, MA: Springer US. ص. 63–84. DOI:10.1007/978-1-4899-2130-7_4.
^Wang، Langning؛ Jia، Yongsheng؛ Liu، Jinliang (2018). "Photoconductive semiconductor switch-based triggering with 1 ns jitter for trigatron". Matter and Radiation at Extremes. AIP Publishing. ج. 3 ع. 5: 256–260. DOI:10.1016/j.mre.2017.12.006. ISSN:2468-080X.
^Williams، P. F.؛ Peterkin، F. E. (1989). "Triggering in trigatron spark gaps: A fundamental study". Journal of Applied Physics. AIP Publishing. ج. 66 ع. 9: 4163–4175. DOI:10.1063/1.344001. ISSN:0021-8979.
^Sletten، A.M.؛ Lewis، T.J. (1957). "Characteristics of the trigatron spark-gap". Proceedings of the IEE Part C: Monographs. Institution of Engineering and Technology (IET). ج. 104 ع. 5: 54. DOI:10.1049/pi-c.1957.0008. ISSN:0369-8904.
^Zhu، H. H.؛ Huang، L.؛ Cheng، Z. H.؛ Yin، J.؛ Tang، H. Q. (2009). "Effect of the gap on discharge characteristics of the three-electrode trigatron switch". Journal of Applied Physics. AIP Publishing. ج. 105 ع. 11: 113303. DOI:10.1063/1.3131692. ISSN:0021-8979.
^Chen، Li؛ Fan، Hao؛ Cao، Ruifeng؛ Yang، Weihong؛ Li، Ying (1 يناير 2020). "Study on the breakdown characteristics of the trigatron spark gap triggered by plasma jet". AIP Advances. AIP Publishing. ج. 10 ع. 1: 015002. DOI:10.1063/1.5128773. ISSN:2158-3226.