Baillod, A., J. Loizu, J. P. Graves, and M. Landreman. (2022) 2022. “Stellarator Optimization for Nested Magnetic Surfaces at Finite β and Toroidal Current”. Physics of Plasmas 29: 042505. doi:10.1063/5.0080809. Reference Link
Dewar, R.L., and Z.S. Qu. (2022) 2022. “Relaxed Magnetohydrodynamics With Ideal Ohm Law Constraint*”. Journal of Plasma Physics 88. Cambridge University Press (CUP). doi:10.1017/s0022377821001355. Reference Link
Dewar, R.L., and Z.S. Qu. (2022) 2022. “Relaxed Magnetohydrodynamics With Ideal Ohm Law Constraint*”. Journal of Plasma Physics 88. Cambridge University Press (CUP). doi:10.1017/s0022377821001355. Reference Link
Nies, Richard. (2020) 2020. “Adjoint Methods for Quasi-Symmetry of Vacuum Fields on a Surface*”. Journal of Plasma Physics 88. Cambridge University Press: 905880106. doi:10.1017/S0022377821001264. Reference Link
MacKay, R. 2020. “Use of Stokes’ Theorem for Plasma Confinement*”. Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences 378 (2174). The Royal Society Publishing: - 20190519. Referenced from pubmed.ncbi.nlm.nih.gov: Use of Stokes’ theorem for plasma confinement*. Reference Link
MacKay, R. (2020) 2020. “Differential Forms for Plasma Physics*”. Journal of Plasma Physics 86 (1). Cambridge University Press: 925860101. Referenced from www.cambridge.org: Differential forms for plasma physics*. Reference Link
Roberg-Clark, G.T., G.G. Plunk, and P. Xanthopoulos. (2021) 2021. “Calculating the Linear Critical Gradient for the Ion-Temperature-Gradient Mode in Magnetically Confined Plasmas”. Journal of Plasma Physics 87 (3). Cambridge University Press (CUP). doi:10.1017/S0022377821000507. Reference Link