Pioneering the design of materials to harness heat.
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Updated
Jan 13, 2022 - Jupyter Notebook
Pioneering the design of materials to harness heat.
Efficient electromagnetic solver based on rigorous coupled-wave analysis for 3D and 2D multi-layered structures with in-plane periodicity, such as gratings, photonic-crystal slabs, metasurfaces, surface-emitting lasers, nano-antennas, and more.
Three-dimensional, Algorithmically-generated Library of DNA Origami Shapes
Programmed Eulerian Routing for DNA Design using X-overs
Monte Carlo simulator of phonon and heat transport in nanostructures
Finite-difference time-domain (FDTD) package capable of dynamic modulations in the refractive index and gain/loss.
A Volume Integral Equation-Fast Fourier Transform Method for Modeling Optical Response of Nanostructures
Non-Equilibrium Green's function approach for quantum transport
Unified Nanotechnology Format
Poisson solver for semiconductor hetero-structures
Model stochastic femtosecond nonequilibrium nanodynamics at the nanoscale
An overview of some of my research work as part of my undergraduate degree in Mechanical Engineering
Model hydrogen adsorption on the surface of nanostructures based on the “Random rain” algorithm
Designer three layered wireframe DNA origami
Tool to validate DNA origami nanostructure designs made in caDNAno2, providing various informatics regarding the structure oligonucleotides.
Generalized 2D phonon transport using a Monte Carlo method
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