Below is a list of my publications; for an up-to-date list see arXiv. You can read my PhD thesis here.
Stable bosonic topological edge modes in the presence of many-body interactions, Phys. Rev. Lett. 135, 146702 (2025) [arXiv:2309.15113]; Niclas Heinsdorf, Darshan G. Joshi, Hosho Katsura, and Andreas P. Schnyder
Spin density wave, Fermi liquid, and fractionalized phases in a theory of antiferromagnetic metals using paramagnons and bosonic spinons, Phys. Rev. B 108, 045123 (2023) [arXiv:2211.10452]; Alexander Nikolaenko, Jonas von Milczewski, Darshan G. Joshi, Subir Sachdev
Superconductivity of non-Fermi liquids described by Sachdev-Ye-Kitaev models, Phys. Rev. Research 5, 013045 (2023) [arXiv:2208.05493]; Chenyuan Li, Subir Sachdev, and Darshan G. Joshi
Emergent Z2 gauge theories and topological excitations in Rydberg atom arrays, Phys. Rev. Lett. 130, 043601 (2023) [arXiv:2204.00632]; Rhine Samajdar, Darshan G. Joshi, Yanting Teng, and Subir Sachdev
Critical metallic phase in the overdoped random t-J model, Proceedings of the National Academy of Sciences 119, e2206921119 (2022) [arXiv:2203.16548]; Maine Christos, Darshan G. Joshi, Subir Sachdev, and Maria Tikhanovskaya
Resonant thermal Hall effect of phonons coupled to dynamical defects, Proceedings of the National Academy of Sciences 119, e2215141119 (2022) [arXiv:2201.11681]; Haoyu Guo, Darshan G. Joshi, and Subir Sachdev
Impurity-induced transformation of spin-orbit entanglement in a layered ruthenate, (under journal review); M. J. Krautloher, J. Bertinshaw, J. Porras, D. G. Joshi, G. Khaliullin, H. Trepka, M. Hepting, D. Adroja, H. C. Walker, A. Ivanov, M. Enderle, U. Stuhr, B. J. Kim, and B. Keimer
Critical anomalous metals near superconductivity in models with random interactions, Phys. Rev. B 103, 115147 (2021) [arXiv:2102.01700]; Chenyuan Li, Darshan G. Joshi, and Subir Sachdev
Anomalous density fluctuations in a random t-J model, Phys. Rev. B 102, 165146 (2020) [arXiv:2006.13947]; Darshan G. Joshi and Subir Sachdev
Metal-insulator transition in a random Hubbard model, Phys. Rev. B 101, 205106 (2020) [arXiv:2002.12381]; Grigory Tarnopolsky, Chenyuan Li, Darshan G. Joshi, and Subir Sachdev
Deconfined critical point in a doped random quantum Heisenberg magnet, Phys. Rev. X 10, 021033 (2020) [arXiv:1912.08822]; Darshan G. Joshi, Chenyuan Li, Grigory Tarnopolsky, Antoine Georges, and Subir Sachdev
Symmetry-enforced band crossings in trigonal materials: Accordion states and Weyl nodal lines, Phys. Rev. Materials 3, 124204 (2019) [arXiv:1908.00901]; Y.-H. Chan, Berkay Kilic, Moritz M. Hirschmann, Ching-Kai Chiu, Leslie M. Schoop, Darshan G. Joshi, and Andreas P. Schnyder
Z2 topological quantum paramagnet on a honeycomb bilayer, Phys. Rev. B (Rapid Commn.) 100, 020407 (2019) [arXiv:1809.06387]; Darshan G. Joshi and Andreas P. Schnyder
Bilayer Kitaev models: Phase diagrams and novel phases, Phys. Rev. B 98, 155101 (2018) [arXiv:1806.01852]; Urban F. P. Seifert, Julian Gritsch, Erik Wagner, Darshan G. Joshi, Wolfram Brenig, Matthias Vojta, and Kai P. Schmidt
Detecting end-states of topological quantum paramagnets via spin-Hall noise spectroscopy, Phys. Rev. B 98, 064401 (2018) [arXiv:1803.11239]; Darshan G. Joshi, Andreas P. Schnyder, and So Takei
Topological excitations in the ferromagnetic Kitaev-Heisenberg model, Phys. Rev. B (Rapid Commn.) 98, 060405 (2018) [Editor's suggestion] [arXiv:1803.01515]; Darshan G. Joshi
Topological quantum paramagnet in a quantum spin ladder, Phys. Rev. B (Rapid Commn.) 96, 220405 (2017) [arXiv:1705.06764]; Darshan G. Joshi and Andreas P. Schnyder
Linked-cluster expansions for quantum magnets on the hypercubic lattice, Phys. Rev. B 94, 125109 (2016) [arXiv:1605.05848]; Kris Coester, Darshan G. Joshi, Matthias Vojta and Kai P. Schmidt
Quantum disordered insulating phase in the frustrated cubic-lattice Hubbard model, Phys. Rev. B (Rapid Commn.) 93, 041106 (2016) [arXiv:1506.07894]; Manuel Laubach, Darshan G. Joshi, Johannes Reuther, Ronny Thomale, Matthias Vojta and Stephan Rachel
Dynamical structure factors and excitation modes of the bilayer Heisenberg model, Phys. Rev. B 92, 245137 (2015) [arXiv:1508.07816]; Maximilian Lohöfer, Tommaso Coletta, Darshan G. Joshi, Fakher F. Assaad, Mathias Vojta, Stefan Wessel and Frederic Mila
Nonlinear bond-operator theory and 1/d expansion for coupled-dimer magnets. II. Antiferromagnetic phase and quantum phase transition, Phys. Rev. B 91, 094405 (2015) [arXiv:1411.7033]; Darshan G. Joshi and Matthias Vojta
Nonlinear bond-operator theory and 1/d expansion for coupled-dimer magnets. I. Paramagnetic phase, Phys. Rev. B 91, 094404 (2015) [arXiv:1407.7870]; Darshan G. Joshi, Kris Coester, Kai P. Schmidt and Matthias Vojta
Quantum Hertz entropy increase in a quenched spin chain, Eur. Phys. J. B 86, 157 (2013) [arXiv:1301.0233]; Darshan G. Joshi and Michele Campisi
Revisiting Langer-Ambegaokar-McCumber-Halperin theory of resistive transitions in 1D superconductors with exact solution, J. Phys.: Condens. Matter (fast-track commn.) 23, 342203 (2011) [arXiv:1106.1720]; Darshan G. Joshi and Arijit Bhattacharyay