Research

Research Interest

Probabilistic Computing, Hardware Acceleration, Machine Learning, Quantum Computing.

Previous undergrad research was on devices:

  • A self-consistent analysis of I-V and the capacitance-voltage model of the HEMT.

  • The effect of doped layer thickness on threshold voltage and improving it at low cost.

  • The effect of polarization charge on I-V characteristics and threshold voltage.

  • Proposal of a novel split donor design of enhancement mode HEMT to improve

threshold voltage without changing current density.

  • Estimation of net polarization charge density using differential threshold voltage technique.