Area of research
Electrical and Electronic Engineering · Condensed Matter Physics
Research interest
Research interests include Radio Frequency Integrated Circuit Design, Physics of Superconductivity and Magnetism, Microwave Engineering and Waveguides, and Superconducting Materials and Applications.
Bonding of Multiple Fine Pitch Flexible Cables to a Single Multi-Chip Module for Cryogenic/Superconductive Computing Applications
Cryogenic and Wide Temperature Thermal Cycling Reliability Study of QFN and CQFJ Packages for Lunar Missions
Tailored Multi-mode, High-Q Superconducting Nb Resonators: Unique Platform for Magnon-Photon Coupling
Face-to-Face Cable Interconnect Scheme for Thin Flexible Superconducting Stripline Cables
Superconducting Molybdenum Multi-Chip Module Approach for Cryogenic and Quantum Applications
Isochronous data link across a superconducting Nb flex cable with 5 femtojoules per bit <sup>*</sup>
Superconducting Microwave Interconnect Technologies for Quantum and Cryogenic Systems
Approaches for High Performance and Thermally Optimized Flexible Cryogenic Microwave Ribbon Cables
Microwave Characterization of Gamma Ray Irradiated Thin Film Embedded and Non-embedded Nb Resonators
Towards Cable-to-Cable Connectors for Flexible Thin-Film Superconducting Transmission Lines
Reliability Characterization of a Flexible Interconnect for Cryogenic and Quantum Applications
Radiation Effects on Thin Flexible Superconducting Cables
Thin-Film Nb/Polyimide Superconducting Stripline Flexible Cables
Low-loss cable-to-cable parallel connection method for thin-film superconducting flexible microwave transmission lines
Distinguishing Dielectric Loss From Superconductor Loss Using Flexible Thin-Film Superconducting Resonator Structures
High-Quality Factor Superconducting Flexible Resonators Embedded in Thin-Film Polyimide HD-4110
Minimizing Film Stress and Degradation in Thin-Film Niobium Superconducting Cables