Conceptual / Physics Foundation

Theory -> Interpretation

I use condensed-matter and semiconductor physics to connect measurements to mechanisms—especially when interpreting magnetic/electronic signatures at low temperatures and identifying next-step tests.

  • Condensed Matter Physics
  • Quantum Magnetism/ QSL Concepts
  • Statistical Mechanics
  • Semiconductor Physics
  • Hardware Logic

Experimental & Materials (Lab)

Synthesis → Characterization

I synthesize and handle sensitive quantum materials and run end-to-end characterization workflows (structure, magnetism, and transport) to map exotic magnetic/electronic behavior and its application in semiconductor devices.

  • Crystal Flux Growth
  • Chemical Vapor Deposition
  • MPMS,PPMS
  • XRD, Laue Diffraction
  • XRF, SEM-EDX
  • Impedance Measurements, Van Der Paaw
  • Thin Film Deposition
  • Lithography, Etching
  • Oxidation, Diffusionm, Ion Implantation
  • PCB soldering, Circuit design

Computational and Data Analysis

Simulation → Pipelines

I build data pipelines that turn raw experimental/simulation outputs into interpretable plots, statistically meaningful fits, and research-ready conclusions.

  • Python, C++, R
  • Algorithm Development
  • Monte Carlo Simulations
  • Statistical and Graphical Analysis
  • Curve Fitting and Error Analysis
  • Introductory Qiskit and Q#

Electronics and Hardware Systems

Device → Architecture

I bridge device-level semiconductor understanding with system-level hardware thinking, building intuition for how constraints flow from physics to scalable architectures.

  • VLSI
  • ASIC
  • FPGA
  • Computer Architecture
  • Computational Logic
  • Microarchitecture
  • Hardware Design
  • PLC,PLD,CPLD,PLA

Phone

(765) 767 1876