Publications ============ If you use simsopt in your research, kindly cite simsopt using reference 1 below. It is recommended that you also give a reference for the simsopt release version used in your work. Each release has a Zenodo archive with a unique DOI. The DOI for the latest release is .. image:: https://zenodo.org/badge/247710081.svg :target: https://zenodo.org/badge/latestdoi/247710081 Clicking this badge will take you to Zenodo, and on the right of the page you will find a list of DOIs for previous releases. Here is a list of publications in which simsopt results appear: .. # The | symbols below are used to put a blank line between each item. #. | M Landreman, B Medasani, F Wechsung, A Giuliani, R Jorge, and C Zhu, "SIMSOPT: A flexible framework for stellarator optimization", *J. Open Source Software* **6**, 3525 (2021). `[journal version] `__ | #. | F Wechsung, A Giuliani, M Landreman, A Cerfon, and G Stadler, "Single-stage gradient-based stellarator coil design: stochastic optimization", *Nuclear Fusion* **62**, 076034 (2022). `[journal version] `__ `[arXiv version] `__ | #. | M Landreman, B Medasani, and C Zhu, "Stellarator optimization for good magnetic surfaces at the same time as quasisymmetry", *Phys. Plasmas* **28**, 092505 (2021). `[journal version] `__ `[arXiv version] `__ | #. | A Bader, D T Anderson, M Drevlak, B J Faber, C C Hegna, S Henneberg, M Landreman, J C Schmitt, Y Suzuki, and A Ware, "Energetic particle transport in optimized stellarators", *Nuclear Fusion* **61**, 116060 (2021). `[journal version] `__ `[arXiv version] `__ | #. | M Landreman and E Paul, "Magnetic fields with precise quasisymmetry for plasma confinement", *Physical Review Letters* **128**, 035001 (2022). `[journal version] `__ `[arXiv version] `__ | #. | F Wechsung and M Landreman and A Giuliani and A Cerfon and G Stadler, "Precise stellarator quasi-symmetry can be achieved with electromagnetic coils", *Proceedings of the National Academy of Sciences* **119**, e2202084119 (2022). `[journal version] `__ | #. | A Baillod, J Loizu, J P Graves, and M Landreman, "Stellarator optimization for good magnetic surfaces at finite β and toroidal current", *Physics of Plasmas*, **29**, 042505 (2021). `[journal version] `__ `[arXiv version] `__ | #. | A Giuliani, F Wechsung, M Landreman, G Stadler, and A Cerfon, "Direct computation of magnetic surfaces in Boozer coordinates and coil optimization for quasi-symmetry", *Journal of Plasma Physics*, **88**, 905880401 (2022). `[journal version] `__ `[arXiv version] `__ | #. | F Wechsung, A Giuliani, M Landreman, A Cerfon, and G Stadler, "Stochastic and a-posteriori optimization to mitigate coil manufacturing errors in stellarator design", *Plasma Physics and Controlled Fusion*, **64**, 105021 (2022). `[journal version] `__ `[arXiv version] `__ | #. | M Landreman, S Buller, and M Drevlak, "Optimization of quasisymmetric stellarators with self-consistent bootstrap current and energetic particle confinement", *Physics of Plasmas*, **29**, 082501 (2022). `[journal version] `__ `[arXiv version] `__ | #. | R Jorge, G G Plunk, M Drevlak, M Landreman, J-F Lobsien, K Camacho Mata, and P Helander, "A single-field-period quasi-isodynamic stellarator", *Journal of Plasma Physics* **88**, 175880504 (2022). `[journal version] `__ `[arXiv version] `__ | #. | A Kaptanoglu, T Qian, F Wechsung, and M Landreman, "Permanent magnet optimization for stellarators as sparse regression", *Physical Review Applied*, **18**, 044006 (2022). `[journal version] `__ `[arXiv version] `__ | #. | E J Paul, A Bhattacharjee, M Landreman, D Alex, J L Velasco, and R Nies, "Energetic particle loss mechanisms in reactor-scale equilibria close to quasisymmetry", *Nuclear Fusion*, **62**, 126054 (2022). `[journal version] `__ `[arXiv version] `__ | #. | A Kaptanoglu, R Conlin, and M Landreman, "Greedy permanent magnet optimization", *Nuclear Fusion*, **63**, 036016 (2023). `[journal version] `__ `[arXiv version] `__ | #. | G T Roberg-Clark, P Xanthopoulos, and G G Plunk, "Reduction of electrostatic turbulence in a quasi-helically symmetric stellarator via critical gradient optimization", *Submitted* (2022). `[arXiv version] `__ | #. | A Goodman, K Camacho Mata, S A Henneberg, R Jorge, M Landreman, G Plunk, H Smith, R Mackenbach, and P Helander, "Constructing precisely quasi-isodynamic magnetic fields", *Submitted* (2022). `[arXiv version] `__ | #. | G T Roberg-Clark, G G Plunk, P Xanthopoulos, C Nuhrenberg, S A Henneberg, and H M Smith, "Critical gradient turbulence optimization toward a compact stellarator reactor concept", *Submitted* (2022). `[arXiv version] `__ | #. | R Jorge, W Dorland, P Kim, M Landreman, N R Mandell, G Merlo, and T Qian, "Direct Microstability Optimization of Stellarator Devices", *Submitted* (2023). `[arXiv version] `__ | #. | R Gaur, S Buller, M E Ruth, M Landreman, I G Abel, and W D Dorland, "An adjoint-based method for optimizing MHD equilibria against the infinite-n, ideal ballooning mode", *Submitted* (2023). `[arXiv version] `__ | #. | D Bindel, M Landreman, and M Padidar, "Direct Optimization of Fast-Ion Confinement in Stellarators", *Submitted* (2023). `[arXiv version] `__ | #. | R Jorge, A Goodman, M Landreman, J Rodrigues, F Wechsung, "Single-Stage Stellarator Optimization: Combining Coils with Fixed Boundary Equilibria", *Submitted* (2023). `[arXiv version] `__ |