Area of research
Electrical and Electronic Engineering · Condensed Matter Physics
Research interest
Research interests include Physics of Superconductivity and Magnetism, Radio Frequency Integrated Circuit Design, 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
On-Chip NbN Superconducting Resonators for Hybrid Magnon-Photon Coupled Systems
A Multi-Stage FPGA-Based Instrumentation Platform for Characterization and Signal Integrity Testing of Superconducting Interconnects at Cryogenic Temperatures
Transport Properties of NbN-Cu Bilayer Superconducting Nanowires
Al/AlOx/Al Josephson Junctions Fabricated by Shadow Evaporation Employing Multiple Symmetric Angled Depositions Per Channel
Methodology to Characterize Thermal Properties of Thin Film Superconductors Using a DynaCool Physical Property Measurement System
Face-to-Face Cable Interconnect Scheme for Thin Flexible Superconducting Stripline Cables
Superconducting Molybdenum Multi-Chip Module Approach for Cryogenic and Quantum Applications
Additive manufacturing and characterization of microstructures using two-photon polymerization for use in cryogenic applications
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
Atomic Layer Deposited Materials as Barrier Layers for Preservation of Nb Superconductivity in Multilayered Thin-Film Structures
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
Reliability Studies of Nb/AlO<i> <sub>x</sub> </i>/Al/Nb Josephson Junctions Through Accelerated-Life Electrical Stress Testing
Electrical characteristics and density of states of thin-film transistors based on sol-gel derived ZnO channel layers with different annealing temperatures
High-Quality Factor Superconducting Flexible Resonators Embedded in Thin-Film Polyimide HD-4110
Embedded Niobium Using PI-2611 for Superconducting Flexible Cables
Minimizing Film Stress and Degradation in Thin-Film Niobium Superconducting Cables
Flexible superconducting Nb transmission lines on thin film polyimide for quantum computing applications
Cryogenic microwave characterization of Kapton polyimide using superconducting resonators
Microwave Performance of Niobium/Kapton Superconducting Flexible Cables
Influence of Fatigue and Bending Strain on Critical Currents of Niobium Superconducting Flexible Cables Containing Ti and Cu Interfacial Layers
Preserving Nb Superconducvity in Thin Film Flexible Structures
Microwave Loss Measurements of Copper-Clad Superconducting Niobium Microstrip Resonators on Flexible Polyimide Substrates