Publications
Below is a selection of my scientific publications. The complete list can be found on inspirehep.net.
Publications with my students and postdocs
- Lee, Y. G., Kim, J., Zhao, T., and Drischler, C. (2026): A Gaussian Process framework for constraining the nuclear equation of state from microscopic calculations with correlated uncertainties, arXiv:2608.09678.
- Giri, A., Kim, J., Drischler, C., Elster, Ch., and Furnstahl, R. J. (2025): Active learning emulators for nuclear two-body scattering in momentum space, Phys. Rev. C 113, 044001, arXiv:2512.17842.
- Maldonado, J. M., Drischler, C., Furnstahl, R. J., and Mlinarić, P. (2025): Greedy Emulators for Nuclear Two-Body Scattering, Phys. Rev. C 112, 024002, arXiv:2504.06092 (source code).
Selected recent papers
- Cook, P., Yu, K., Drischler, C., and Bogner, S.K. (2026): PMM-IMSRG emulator for the nuclear equation of state with quantified uncertainties, arXiv:2607.19773.
- Drischler, C., McElvain, K.S., and Arthuis, P. (2026): Many-body perturbation theory for the nuclear equation of state up to fifth order, arXiv:2603.24532.
- Gnech, A., Zhang, X., Drischler, C., Furnstahl, R. J., Grassi, A., Kievsky, A., Marcucci, L.E., and Viviani, M. (2025): Emulation of Proton-Deuteron Scattering via the Reduced Basis Method and Active Learning: Detailed Description, arXiv:2511.10420 (companion paper: arXiv:2511.01844).
- Semposki, A. C., Drischler, C., Furnstahl, R. J., and Phillips, D. R. (2025): Microscopic constraints for the equation of state and structure of neutron stars: a Bayesian model mixing framework, Phys. Rev. C 113, 015808.
Selected publications
- Wellenhofer, C., Drischler, C., and Schwenk, A. (2020): Dilute Fermi gas at fourth order in effective field theory, Phys. Lett. B 802 135247.
- Drischler, C., Furnstahl, R. J., Melendez, J. A., and Phillips, D. R. (2020): How well do we know the neutron-matter equation of state at the densities inside neutron stars? A Bayesian approach with correlated uncertainties, Phys. Rev. Lett. 125, 202702 (source code).
- Drischler, C., Hebeler, K., and Schwenk, A. (2019): Chiral interactions up to N3LO and nuclear saturation, Phys. Rev. Lett. 122, 042501.
- Drischler, C., Hebeler, K., and Schwenk, A. (2016): Asymmetric nuclear matter based on chiral two- and three-nucleon interactions, Phys. Rev. C 93, 054314.
- Drischler, C. (2017): Nuclear matter from chiral effective field theory, http://tuprints.ulb.tu-darmstadt.de/6984/
Review articles
- Drischler, C., Melendez, J. A., Furnstahl, R. J., Garcia, A. J., and Zhang, Xilin (2022): BUQEYE Guide to Projection-Based Emulators in Nuclear Physics. Front. Phys. 10, 92931 (source code).
- Melendez, J. A., Drischler, C., Furnstahl, R. J., Garcia, A. J., and Zhang, Xilin (2022): Model reduction methods for nuclear emulators. J. Phys. G: Nucl. Part. Phys. 49, 102001.
- Drischler, C., Holt, J. W., and Wellenhofer, C. (2021): Chiral Effective Field Theory and the High-Density Nuclear Equation of State. Annu. Rev. Nucl. Part. Sci. 71, 403.
- Drischler, C., Haxton, W., McElvain, K., Mereghetti, E., Nicholson, A., Vranas, P., and Walker-Loud, A. (2021): Towards grounding nuclear physics in QCD. Prog. Part. Nucl. Phys. 121, 103888.
