SUJIT DAS
Indian Institute of Science, Unité Mixte de Physique CNRS/Thales, University of California
About
Dr Sujit Das obtained his B.Sc in Physics from Calcutta University, India in 2009 and M.Sc in Physics from Indian Institute Technology Kanpur, India in 2011. He then pursued his Ph.D at The Leibniz Institute for Solid State and Materials Research in Dresden (IFW Dresden) and Martin Luther University (MLU) Halle-Wittenberg, Germany in Condensed Matter Physics/Material Science-Experiment under supervision of Professor Kathrin Dörr. His research focused on the magnetic order at coherent oxide interfaces. After he obtained his PhD in 2016, he continued his research career in the University of California, Berkeley, USA as a post-doctoral researcher in Professor Ramaoorthy Ramesh’s lab. His research areas focus on the synthesis of ferroic thin films, particularly on ferroelectric superlattices, ferroelectric quantum topological system by Laser MBE and characterization with different technique. Presently he is an assistant professor at Indian Institute of Science, Bangalore, India.
Employment
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Indian Institute of Science Assistant Professor2022 - Present
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Unité Mixte de Physique CNRS/Thales Post-doctoral Researcher2021 - 2022
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University of California Post-doctoral researcher2017 - 2021
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (82)
- Topological textures in polar materials Save
- Decoding THz‐Driven Dynamic Fingerprints of Ferroelectric Nanotwin Networks Save
- Correction to “Mechanical Manipulation of Ferroelectric Domains in Molecular Ferroelectric” Save
- Orientation‐Dependent Polarization Landscapes and Multistate Switching in Relaxor Ferroelectric Thin Films Save
- Mechanical Manipulation of Ferroelectric Domains in Molecular Ferroelectric Save
- Harness of room-temperature polar skyrmion bag in oxide superlattice Save
- Terahertz-field activation of polar skyrons Save
- Fatigue-free ferroelectricity in Hf0.5Zr0.5O2 ultrathin films via interfacial design Save
- Hidden domain boundary dynamics toward crystalline perfection Save
- Large Enhancement of Ferroelectric Properties of Perovskite Oxides Via Nitrogen-incorporation Save