SB
Saswata Bhattacharya
Also known as: SASWATA BHATTACHARYYA
Indian Institute of Technology Hyderabad, Indian Institute of Science Bangalore
Employment
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Indian Institute of Technology Hyderabad Professor2023 - Present
Education
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Indian Institute of Science Bangalore PhD
Projects & Funding
Projects & funding information is unavailable.
Publications (80)
- Comprehensive mapping of tracer diffusivities across composition space in ternary Ni–Al–Ti and quinary Ni–Co–Fe–Al–Ti high-entropy alloy using diffusion couple experiments and physics-informed neural network inversion Save
- Estimation of reliable diffusion coefficients using the diffusion couple method and a constraint-enhanced multi-objective optimization framework for mobility data generation: Ni–Co–Cr system as a case study Save
- Extracting composition-dependent diffusion coefficients over a very large composition range in NiCoFeCrMn high entropy alloy following strategic design of diffusion couples and physics informed neural network numerical method Save
- Effect of compressive strain on the lead free ferroelectric x(Ba0.7Ca0.3)TiO3–(1−x)Ba(Zr0.2Ti0.8)O3 epilayers near morphotropic phase composition Save
- Interplay between thermal and compositional gradients decides the microstructure during thermomigration: A phase-field study Save
- An experimental estimation method of diffusion coefficients in ternary and multicomponent systems from a single diffusion profile Save
- Concepts for estimating all types of diffusion coefficients of NiCoFeCr multi-principal element alloys using two dissimilar or a combination of ideal and non-ideal pseudo-ternary diffusion couples Save
- Effect of concurrent thermal grooving and grain growth on morphological and topological evolution of a polycrystalline thin film: Insights from a 3D phase-field study Save
- Estimation of diffusion coefficients in NiCoFeCrAl multi-principal element alloy following an inventive design strategy of diffusion couples Save
- Role of electrostriction on domain switching near the morphotropic phase region in a ferroelectric solid solution: Thermodynamic analysis and phase-field simulations Save