31. “Role of On-site and Inter-site Coulomb Interactions in KV3Sb5: A first-principles DFT + U + V study”, I. R. Reddy∗, S. Ghosh∗, B. Kim, and C.J. Kang, Physical Review B 112, 115109 (2025) (∗Equal Author).
30. “Phonon dynamics and magnetodielectric relaxation in distorted honeycomb ferrimagnet Ni4Nb2O9: Experiment and first-principles study”, H. Singh, S. Singh, S. Ghosh, P. Pramanik, V. Sathe, R. Mathieu, W. Prellier, and S. Thota, Physical Review Materials 9, 045202 (2025).
29. “Magnetic exchange interactions and non-Debye relaxation in spin-3/2 frustrated Kagome magnet Co3V2O8”, H. Singh, M. Skoulatos, D. C. Joshi, P. Pramanik, M. Roy-Chowdhury, S. Ghosh, S. K Jena, J. K Dey, S. Thota, Journal of Physics: Condensed Matter 36, 315601 (2024).
28. “Reentrant Canonical Spin-Glass Dynamics and Tunable Field-Induced Transitions in (GeMn)Co2O4 Kagome lattice”, A. D. Singha, P. Pramanik, D. C. Joshi, S. Ghosh, S. K. Jena, P. Tiwari, T. Sarkar, S. Thota, Journal of Physics: Condensed Matter 36, 075802 (2023).
27. “Magnetic structure and field-induced transitions in the triangular spin-1 antiferromagnet NiNb2O6: Observation of a triple point”, R. Maruthi, S. Singh, S. Ghosh, M. S. Seehra, B. Weise, W. Prellier, S. Thota, Physical Review B 104, 224430 (2023).
26. “Boron doped g-C3N4 quantum dots based highly sensitive surface acoustic wave NO2 sensor with faster gas kinetics under UV light illumination”, K. S. Pasupuleti, S. Ghosh, N. Jayababu, C. J. Kang, H. D. Cho, S. G. Kim, M. D. Kim, Sensors and Actuators B: Chemical 378, 133140 (2023).
25. “Unraveling the nature of ferrimagnetism and associated exchange interactions in distorted honeycomb Ni4Nb2O9”, S. Thota, M. S. Seehra, M. R. Chowdhury, H. Singh, S. Ghosh, S. K. Jena , P. Pramanik, T. Sarkar, R. S. Rawat, R. Medwal, and B. Weise, Physical Review B 106, 134418 (2022).
24. “Antiferromagnetic short-range order and cluster spin-glass state in diluted spinel ZnTiCoO4”, M. R. Chowdhury, M. S. Seehra, P. Pramanik, S. Ghosh, T. Sarkar, B. Weise, S. Thota, Journal of Physics: Condensed Matter 34, 275803 (2022).
23. “Anisotropic Ferromagnetic Organic Nanoflowers”, S. Sasidharan, S. Ghosh, R. Sreedhar, K. Kumari, S. Thota, V. Ramakrishnan, Journal of Physical Chemistry C 126, 8511 (2022).
22. “Substrate orientation dependent characteristics of half-metallic and metallic superlattices [La0.7Sr0.3MnO3 /LaNiO3]10”, S. Das, R. G. Tanguturi, S. Ghosh, R. K. Dokala, R. Medwal, S. Gupta, Z. Yan, Y. Qi, R. S. Rawat, S. Thota, Journal of Applied Physics 131, 125305 (2022).
21. “Determination of the tricritical point, H–T phase diagram and exchange interactions in the antiferromagnet MnTa2O6”, Maruthi R., M. S. Seehra, S. Ghosh, R. Medwal, R. S. Rawat, B. Weise, E. S. Choi and S. Thota, Journal of Physics: Condensed Matter 34, 155801 (2022).
20. “Tailoring the electronic structure and magnetic properties of pyrochlore Co2Ti1−xGexO4: A GGA+U ab initio study”, S. Ghosh, S. Singh, D. Das, S. Ghosh, P. K. Mishra, and S. Thota, Journal of Physics: Condensed Matter 33, 145504 (2021).
19. “Magnetic ground state and exchange interactions in the Ising chain ferromagnet CoNb2O6”, S. Thota, S. Ghosh, Maruthi R, D. C. Joshi, R. Medwal, R. S. Rawat, and M. S. Seehra, Physical Review B 103, 064415 (2021).
18. “Lattice dynamics and magnetic exchange interactions in GeCo2O4: A spinel with S=1/2 pyrochlore lattice”, P.Pramanik, S. Singh, M. R. Chowdhury, S. Ghosh, V. Sathe, K. M. Rabe, D. Vanderbilt, M. S. Seehra, and S. Thota, Physical Review B 104, 014433 (2021).
17. “Magnetic field-temperature phase diagram, exchange constants and specific heat exponents of the antiferromagnet MnNb2O6”,Maruthi R. , S. Ghosh , M. S. Seehra, D. C. Joshi, M. R. Chowdhury, R. Medwal, R. S. Rawat, B. Weise and S. Thota, Journal of Physics: Condensed Matter 33, 345801 (2021).
16. “The role of epitaxial strain on the electronic and magnetic structure of La0.7Sr0.3MnO3/LaCoO3 bilayers”, S. Das, S. Ghosh, R. G. Tanguturi, R. Medwal, S. Gupta, R. K. Dokala, R. S. Rawat, S. Das, S. Thota, AIP Advances 11, 125115 (2021).
15. “Dynamical response of localized electron hopping and dipole relaxation in Cu1−xZnxFe2O4 magneto-ceramics”, S. K. Jena, D. C. Joshi, S. Ghosh, K. Dasari, and S. Thota, Journal of Physics D: Applied Physics 54, 425303 (2021).
14. “Identification of a Fe-Dependent Optical Mode in CuAl1−xFexO2”, M. Aziziha, S. Akbarshahi, S. Pittala, S. Ghosh, R. Sooriyagoda, A. H. Romero, S. Thota, A. D. Bristow, M. S. Seehra, and M. B. Johnson, Journal of Physical Chemistry C 125, 3577 (2021).
13. “Antiferromagnetism, spin-glass state, H-T phase diagram, and inverse magneto-caloric effect in Co2RuO4”, S. Ghosh, D. C. Joshi, P. Pramanik, S. K. Jena, S. Pittala, T. Sarkar, M. S. Seehra, and S. Thota, Journal of Physics: Condensed Matter 32, 485806 (2020).
12. “Electronic structure and magnetic exchange interactions in Zn diluted CuFe2O4 magnetoceramics”, S. K. Jena, D. C. Joshi, Z. Yan, Y. Qi, S. Ghosh, and S. Thota, Journal of Applied Physics 128, 073908 (2020).
11. “Elastic strain control of electronic structure, and magnetic properties of [Pr1−xCaxMnO3/SrTiO3]15 superlattices”, R. K. Dokala, S. Das, D. C. Joshi, S. Ghosh, Z. Yan, Y. Qi, S. Das, and S. Thota, Journal of Applied Physics 127, 175303 (2020).
10. “Low-temperature anomalous spin correlations and Kondo effect in ferromagnetic SrRuO3/LaNiO3/La0.7Sr0.3 MnO3 trilayers”, S. Ghosh, R. G. Tanguturi, P. Pramanik, D. C. Joshi, P. K. Mishra, S. Das, and S. Thota, Physical Review B 99, 115135 (2019).
9. “Magnetic exchange interactions and band gap bowing in NixMg1−xO (0.0≤ x ≤1.0): A GGA+U density functional study”, S. Ghosh, S. K. Jena, P. K. Mishra, M. S. Seehra, and S. Thota, Journal of Applied Physics 126, 233904 (2019).
8. “Magnetic ground state, field-induced transitions, electronic structure, and optical band gap of the frustrated antiferromagnet GeCo2O4”, P. Pramanik, S. Ghosh, P. Yanda, D. C. Joshi, S. Pittala, A. Sundaresan, P. K. Mishra, S. Thota, and M. S. Seehra, Physical Review B 99, 134422 (2019).
7. “Phonon Dynamics in Anisotropic Dilute CuAl1–xFexO2 Delafossite Alloys by a Weighted Dynamical Matrix Approach”, M. Aziziha, S. Akbarshahi, S. Ghosh, P. Pramanik, J. P. Lewis, A. H. Romero, S. Thota, M. S. Seehra, and M. B. Johnson, Journal of Physical Chemistry C 123, 30604 (2019).
6. “Role of phase transition in the dielectric and magnetic properties of Na containing NiO”, D. C. Joshi, P. Pramanik, M. K. Warshi, S. Ghosh, A. Meher, K. Dasari, and S. Thota, Journal of Physics and Chemistry of Solids 130, 154 (2019).
5. “Role of dilution on the electronic structure and magnetic ordering of spinel cobaltites”, S. Ghosh, S. Singh, D. C. Joshi, P. Pramanik, S. Ghosh, P. K. Mishra, and S. Thota, Physical Review B 98, 235119 (2018).
4. “Interfacial magnetism in La0.7Sr0.3MnO3/LaNiO3 ultrathin superlattices”, S. Das, S. Ghosh, P. Pramanik, D. C. Joshi, and S. Thota, Journal of Physics D: Applied Physics 51, 325001 (2018).
3. “Effect of NiO substitution on the structural and dielectric behaviour of NaNbO3”, R. T. George, D. C. Joshi, S. Nayak, N. Tiwari, R. N. Chauhan, P. Pramanik, T. A. Dar, S. Ghosh, and S. Thota, Journal of Applied Physics 123, 054101 (2018).
2. “Finite-size scaling and exchange-bias in SrRuO3/LaNiO3/SrRuO3 trilayers”, S. Thota, S. Ghosh, S. Nayak, D. C. Joshi, P. Pramanik, K. Roychowdhury, and S. Das, Journal of Applied Physics 122, 124304 (2017).
1. “Neutron diffraction study of the inverse spinels Co2TiO4 and Co2SnO4”, S. Thota, M. Reehuis, A. Maljuk, A. Hoser, J. -U. Hoffmann, B. Weise, A. Waske, M. Krautz, D. C. Joshi, S. Nayak, S. Ghosh, P. Suresh, K. Dasari, S. Wurmehl, O. Prokhnenko, and B. Buchner, Physical Review B 96, 144104 (2017).