Postdoctoral Appointee-Terahertz Cavity Antiferromagnonics
Core
Developing terahertz cavity-magnonics platforms using low-damping antiferromagnetic oxides to control and couple spin excitations for next-generation information processing and quantum science.
Role type
Postdoctoral researcher in condensed matter physics and terahertz cavity magnonics
Builds
Solid-state terahertz circuit systems exploiting coherent spin dynamics and light-matter interaction
Domain
Condensed matter physics, terahertz photonics, antiferromagnetic spintronics
Deliverable
production ML models | product features | dashboards & analysis | research | client delivery | infrastructure | physical/clinical work
Required skills
Terahertz generation and characterization, free-space optic experiments, antiferromagnetic spintronics, cavity spintronics, epitaxial thin film growth (magnetron sputtering), cryogenic measurements, electromagnetic simulation (COMSOL, HFSS), scientific software development (Python)
Preferred skills
Microwave circuit design, terahertz optics, near-field resonators (split-ring, SSPP), hybrid dynamic systems, optical cryostat operation, superconducting magnetic experience
Technologies
COMSOL, HFSS, Python, magnetron sputtering systems, optical cryostats, superconducting electromagnets
Responsibilities
Design, simulate, fabricate, and characterize terahertz coplanar resonators; set up terahertz and optical free-space experiments; grow epitaxial antiferromagnetic oxide thin films; build and measure cavity coupling with antiferromagnetic magnon modes in cryogenic environments
Seniority
Postdoctoral, independent research with collaboration