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Profile Summary

Muhammad Yusrul Hanna is a junior researcher and Quantum Information & Computation Research Group member. He obtained his master’s degree from Universitas Indonesia in 2023, focusing on material simulation to determine properties such as thermoelectric effect, light-material interaction, and topology. Currently, he is working on quantum dynamics and quantum computation in many-body systems.

Academic Degrees

  • M.Si. / M.Sc. (2023) | Department of Physics, Universitas Indonesia, Indonesia.
  • S.Si. / B.Sc. (2017) | Department of Physics, Universitas Gadjah Mada, Indonesia.

Work Experience

  • 2022-present, Junior Researcher, BRIN Research Center for Quantum Physics, Indonesia.
  • 2021-2022, Junior Researcher, BRIN Research Center for Physics, Indonesia.
  • 2019-2021, Junior Researcher, LIPI Research Center for Physics, Indonesia.
  • 2018-2019, Assistant Researcher, LIPI Research Center for Metrology, Indonesia.

Selected Publications

  • M. Y. Hanna, M. A. Majidi, and A. R. T. Nugraha, “Computational study of III-V direct-gap semiconductors for thermoradiative cell applications“, Nanotechnology 34, 3153705 (2023).
  • E. Widianto, Shobih, N. M. Nursam, M. Y. Hanna, K. Triyana, A. Rusydi, and I. Santoso, “Electronic correlations enhance optical absorption in graphene oxide-modified methylammonium lead iodide perovskite“, J. Alloys Compd. 947, 169634 (2023).
  • E. Suprayoga, W. B. K. Putri, K. Singsoog, S. Paengson, M. Y. Hanna, A. R. T. Nugraha, D. R. Munazat, B. Kurniawan, M. Nurhuda, T. Seetawan, and E. H. Hasdeo, “Investigation of Electron and Phonon Transport in Bi-doped CaMnO3 for Thermoelectric Applications“, Mater. Res. Bull. 141, 111359 (2021).
  • C. Euaruksakul, H. Nakajima, A. Rattanachata, M. Y. Hanna, A. R. T. Nugraha, M. Boutchich, “Electronic and Thermoelectric Properties of Graphene on 4H-SiC (0001) Nanofacets Functionalized with F4-TCNQ“, J. Electron. Mater. 49, 6872-6880 (2020).
  • M. Nurhuda, A. R. T. Nugraha, M. Y. Hanna, E. Suprayoga, E. H. Hasdeo, “Thermoelectric properties of Mexican-hat band structures“, Adv. Nat. Sci.: Nanosci. Nanotechnol. 11, 015012 (2020).
  • E. H. Hasdeo, L. P. A. Krisna, M. Y. Hanna, B. E. Gunara, N. T. Hung, A. R. T. Nugraha, “Optimal Band Gap for Improved Thermoelectric Performance of Two-dimensional Dirac Materials“, J. Appl. Phys. 126, 035109 (2019).