Dr. Mousumi Sen, Ph.D.

Ph.D. Physics, Deep Learning, AI, Quantum computing

Fremont, California, United States of America

Research Expertise

Physical and Theoretical Chemistry
Inorganic Chemistry
Surfaces, Coatings and Films
Electronic, Optical and Magnetic Materials
Materials Chemistry
Catalysis
Acoustics and Ultrasonics
Condensed Matter Physics

About

I am a applied physicist, including an MS and a PhD. My expertise encompasses a distinctive skill set that encompasses artificial intelligence, deep learning, machine learning, generative AI, quantum optimization, and quantum artificial intelligence. With 4+ years of experience (post PhD) in leading the research and development teams, my focus has primarily been on utilizing machine learning and deep learning to address various scientific and business problems. I also possess hands on experience with IBM's Quantum Qiskit Runtime, and D-Wave's quantum optimizers with QUBO and Leap.

Publications

Construction of Polynuclear Lanthanide (Ln = DyIII, TbIII, and NdIII) Cage Complexes Using Pyridine–Pyrazole-Based Ligands: Versatile Molecular Topologies and SMM Behavior

Inorganic Chemistry / Aug 25, 2015

Bala, S., Bishwas, M. S., Pramanik, B., Khanra, S., Fromm, K. M., Poddar, P., & Mondal, R. (2015). Construction of Polynuclear Lanthanide (Ln = DyIII, TbIII, and NdIII) Cage Complexes Using Pyridine–Pyrazole-Based Ligands: Versatile Molecular Topologies and SMM Behavior. Inorganic Chemistry, 54(17), 8197–8206. https://doi.org/10.1021/acs.inorgchem.5b00334

Observation of magnetic anomalies in one-step solvothermally synthesized nickel–cobalt ferrite nanoparticles

Nanoscale / Jan 01, 2016

Datt, G., Sen Bishwas, M., Manivel Raja, M., & Abhyankar, A. C. (2016). Observation of magnetic anomalies in one-step solvothermally synthesized nickel–cobalt ferrite nanoparticles. Nanoscale, 8(9), 5200–5213. https://doi.org/10.1039/c5nr06791j

Large Increase in the Energy Product of Fe3Se4 by Fe-Site Doping

The Journal of Physical Chemistry C / Feb 13, 2014

Sen Bishwas, M., Das, R., & Poddar, P. (2014). Large Increase in the Energy Product of Fe3Se4 by Fe-Site Doping. The Journal of Physical Chemistry C, 118(8), 4016–4022. https://doi.org/10.1021/jp411956q

Raman spectroscopy-based sensitive, fast and reversible vapour phase detection of explosives adsorbed on metal–organic frameworks UiO-67

New Journal of Chemistry / Jan 01, 2021

Sen Bishwas, M., Malik, M., & Poddar, P. (2021). Raman spectroscopy-based sensitive, fast and reversible vapour phase detection of explosives adsorbed on metal–organic frameworks UiO-67. New Journal of Chemistry, 45(16), 7145–7153. https://doi.org/10.1039/d0nj04915h

Study of magnetic entropy and heat capacity in ferrimagnetic Fe3Se4nanorods

Journal of Physics D: Applied Physics / Apr 13, 2016

Bishwas, M. S., & Poddar, P. (2016). Study of magnetic entropy and heat capacity in ferrimagnetic Fe3Se4nanorods. Journal of Physics D: Applied Physics, 49(19), 195003. https://doi.org/10.1088/0022-3727/49/19/195003

Room Temperature Ferromagnetic Spin Ordering in Multiferroic Double Perovskite Oxides

2021 IEEE International Symposium on Applications of Ferroelectrics (ISAF) / May 16, 2021

Yu, J., Ning, H., & Wu, Q. (2021, May 16). Room Temperature Ferromagnetic Spin Ordering in Multiferroic Double Perovskite Oxides. 2021 IEEE International Symposium on Applications of Ferroelectrics (ISAF). https://doi.org/10.1109/isaf51943.2021.9477357

Towards rare-earth-free permanent magnets

Marion, J. L. (n.d.). Towards rare-earth-free permanent magnets: exchange bias in binary Mn-based alloys [Northeastern University Library]. https://doi.org/10.17760/d20003080

Education

Ph.D, Physics / February, 2018

Pune
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