Quantum Topological Qubit Advanced Manufacturing Engineer
Core
Develop and optimize semiconductor process modules and materials systems for scalable topological quantum computing platforms.
Role type
Principal Engineer, hands-on IC manufacturing engineer
Builds
Scalable topological qubit devices and superconducting materials systems
Domain
Semiconductor manufacturing / Quantum computing / Materials science
Deliverable
production ML models | product features | dashboards & analysis | research | client delivery | infrastructure | physical/clinical work
Required skills
Semiconductor process engineering, Deposition (PVD, CVD, ALD), Etch, Epitaxial growth (MBE, MOCVD), Materials characterization, DOE design, Statistical analysis, Yield analysis, Process integration
Preferred skills
Superconducting materials, III-V heterostructures, Topological quantum devices, BEOL integration, Cryogenic materials behavior, Yield improvement
Technologies
PVD, CVD, ALD, MBE, MOCVD, SPC
Responsibilities
Develop and optimize process modules including PVD, CVD, ALD, etch, and epitaxial growth; Engineer advanced materials systems including III-V heterostructures, superconductors, and low-loss dielectrics; Design and execute DOE experiments to evaluate materials, interfaces, and device performance drivers; Characterize films using electrical, physical, and structural techniques to assess quality and variability; Analyze data to identify key process drivers, defect mechanisms, and optimization opportunities; Develop process recipes to meet device requirements, including cryogenic and low-noise performance; Support integration of process modules into device and BEOL flows, including superconducting interconnects; Apply SPC and variability analysis to improve process stability, repeatability, and yield; Support yield-learning and root-cause analysis activities; Document process flows, results, and learnings for knowledge transfer and scale-up
Seniority
Principal, hands-on IC
