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Quantum Hardware Engineer Device Fabrication Jobs

... hardware systems. * Experience mentoring scientists, researchers, or engineers and helping bridge theoretical research with practical implementation. Clearance: * Active TS/SCI clearance or ability ...

... hardware systems. * Experience mentoring scientists, researchers, or engineers and helping bridge theoretical research with practical implementation. Clearance: * Active TS/SCI clearance or ability ...

NY · On-site

Needs extensive knowledge of quantum hardware and device design, optimal control theory, and experimentation to engineer ideas to an advanced state of feasibility. * Proficiency in Experimental ...

Strong software development skills, including experience with Python, C++, or other programming languages used in quantum computing. * Experience working with industrial quantum hardware providers or ...

Senior HPC and Quantum Systems Engineer

Westford, MA · Hybrid

$108K - $148K/yr

We are seeking a Senior HPC & Quantum Systems Engineer to help architect, deploy, and operate a ... Familiarity with quantum computing concepts and hardware architectures (neutral atom, trapped ion ...

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Quantum Hardware Engineer Device Fabrication information

See salary details

$37.5K

$87.3K

$140K

How much do quantum hardware engineer device fabrication jobs pay per year?

As of Sep 12, 2026, the average yearly pay for quantum hardware engineer device fabrication in the United States is $87,296.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,000.00 and $95,500.00 per year, depending on experience, location, and employer.

What is a quantum hardware engineer device fabrication?

A Quantum Hardware Engineer specializing in Device Fabrication is a professional who designs, builds, and tests the physical components used in quantum computers and related technologies. This role involves working with materials at the nanoscale to create quantum bits (qubits) and other essential hardware elements. Engineers in this field use advanced techniques such as lithography, thin-film deposition, and cryogenic testing to ensure precise control and high performance of quantum devices. They collaborate closely with physicists and other engineers to prototype and optimize quantum hardware for research and commercial applications.

What are the key skills and qualifications needed to thrive as a quantum hardware engineer device fabrication?

A Quantum Hardware Engineer in device fabrication requires a strong background in physics, materials science, and nanofabrication techniques, typically supported by an advanced degree in a related field. Familiarity with cleanroom processes, lithography tools, thin-film deposition systems, and characterization equipment is essential, and certifications in cleanroom safety or specialized fabrication methods may be beneficial. Attention to detail, problem-solving abilities, and effective collaboration are crucial soft skills for excelling in this role. These skills and expertise are vital for developing reliable quantum devices, advancing research, and ensuring the success of quantum computing projects.

What are some common challenges faced when fabricating quantum hardware devices, and how can new engineers best prepare to address them?

Quantum hardware device fabrication often involves working with delicate materials at the nanoscale, where even minor contaminants or process variations can significantly impact device performance. New engineers may encounter challenges such as maintaining ultra-clean environments, mastering specialized equipment, and troubleshooting device yield issues. To prepare, it's beneficial to gain hands-on experience in cleanroom protocols, familiarize oneself with fabrication tools like electron beam lithography and deposition systems, and stay updated on the latest research in quantum device fabrication. Strong collaboration with physicists and materials scientists is also essential for resolving interdisciplinary challenges and advancing projects efficiently.

What is the difference between Quantum Hardware Engineer Device Fabrication vs Quantum Hardware Engineer Quantum Algorithm Development?

AspectQuantum Hardware Engineer Device FabricationQuantum Hardware Engineer Quantum Algorithm Development
Primary FocusDesigning and manufacturing physical quantum devices and componentsDeveloping algorithms to run on quantum hardware and optimize their performance
Required SkillsQuantum physics, fabrication techniques, cleanroom protocolsQuantum computing theory, programming languages, algorithm design
Work EnvironmentLaboratories, cleanrooms, manufacturing facilitiesResearch labs, software development environments
Common CertificationsPhysics degrees, fabrication certificationsComputer science degrees, quantum programming certifications

While both roles involve quantum computing, Quantum Hardware Engineer Device Fabrication focuses on building the physical quantum devices, whereas Quantum Hardware Engineer Quantum Algorithm Development concentrates on creating algorithms to utilize these devices effectively.

What are popular job titles related to Quantum Hardware Engineer Device Fabrication jobs?

For Quantum Hardware Engineer Device Fabrication jobs, the most frequently searched job titles are:

Infographic showing various Quantum Hardware Engineer Device Fabrication job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 87% Full Time, 9% Part Time, and 3% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $87,296 per year, or $42 per hour.

Quantum Superconducting Qubit Integration

New York, NY • On-site

GlobalFoundries
Manufacturing • 10K+ employees

$113K - $153K/yr

Full-time

Re-posted 20 days ago


Key responsibilities

  • Support integration of superconducting qubit hardware, including superconducting wiring, Josephson Junctions, resonators, BEOL modules, cryogenic interfaces, and advanced packaging.

  • Develop and execute process integration flows for superconducting materials, junction formation, patterning, dielectric interfaces, and module interactions.

  • Analyze process and device performance drivers such as defectivity, variability, contamination, interface quality, dielectric loss, flux trapping, and thermalization.


GlobalFoundries rating

8.3

Company rating: 8.3 out of 10

Based on 35 frontline employees who took The Breakroom Quiz


Job description

The Superconducting Qubit Integration (MTS) role is a technical contributor within the GF Labs / Technology Development organization focused on enabling scalable superconducting quantum computing hardware. This position supports integration of superconducting materials, Josephson Junction devices, low-loss wiring, resonators, cryogenic read-out structures, and manufacturable process flows.
About GlobalFoundries
GlobalFoundries is a leading full-service semiconductor foundry providing a unique combination of design, development, and fabrication services to some of the world's most inspired technology companies. With a global manufacturing footprint spanning three continents, GlobalFoundries makes possible the technologies and systems that transform industries and give customers the power to shape their markets. For more information, visit www.gf.com.
Introduction
The Superconducting Qubit Integration (MTS) role is a technical contributor within the GF Labs / Technology Development organization focused on enabling scalable superconducting quantum computing hardware. This position supports integration of superconducting materials, Josephson Junction devices, low-loss wiring, resonators, cryogenic read-out structures, and manufacturable process flows.
Job Summary
As a Member of Technical Staff, this role contributes to process and module integration for superconducting-qubit platforms across device, BEOL wiring, resonator, packaging, and cryogenic characterization domains. The position emphasizes hands-on execution, data-driven problem solving, and cross-functional collaboration to improve performance, yield, variability, and scalability.
Essential Responsibilities
  • Support integration of superconducting qubit hardware, including superconducting wiring, Josephson Junctions, resonators, BEOL modules, cryogenic interfaces, and advanced packaging.
  • Develop and execute process integration flows for superconducting materials, junction formation, patterning, dielectric interfaces, and module interactions.
  • Improve low-loss superconducting interconnect and microwave structures for cryogenic operation, including ground planes, vias, crossovers, air bridges, feedlines, filters, and read-out resonators.
  • Analyze process and device performance drivers such as defectivity, variability, contamination, interface quality, dielectric loss, flux trapping, and thermalization.
  • Execute DOEs and analyze inline, physical, electrical, microwave, and cryogenic data to guide integration improvements.
  • Work cross-functionally with device, process, metrology, packaging, reliability, design enablement, and cryogenic-test teams to deliver integration milestones.
  • Translate superconducting quantum requirements into manufacturable flows, design rules, materials specifications, characterization plans, and yield-learning actions.
  • Document process flows, assumptions, materials tradeoffs, characterization results, and technical learnings for scalable development and knowledge transfer.

Required Qualifications
  • Education: BS in Electrical Engineering, Materials Science, Chemical Engineering, Physics, Applied Physics, or related field.
  • Years of Experience: 5+ years in semiconductor process, device, materials, superconducting device, or integration engineering.
  • Significant experience with superconducting wiring, superconducting materials, and cryogenic device or quantum-hardware integration.
  • Experience with Josephson Junction fabrication, integration, testing, or characterization.
  • Experience with cryogenic characterization of superconducting devices, resonators, interconnect, or related structures.
  • Experience designing, integrating, or characterizing superconducting circuits, resonators, or microwave structures for qubit control/read-out.
  • Strong data analysis, problem-solving, debugging, communication, and cross-functional collaboration skills.
  • Travel: ~10%.

Preferred Qualifications
  • MS or PhD in Electrical Engineering, Physics, Applied Physics, Materials Science, or related field.
  • Experience with superconducting films such as Al, Nb, NbN, TiN, Ta, or related low-loss materials.
  • Experience with Josephson Junction process modules such as trilayers, shadow evaporation, oxidation control, lift-off, damascene, or subtractive patterning.
  • Familiarity with microwave engineering for superconducting qubits, including resonator Q, dielectric loss, impedance matching, crosstalk, filtering, and packaging parasitics.
  • Experience with dilution refrigerator measurements, cryogenic probing, S-parameters, resonator extraction, critical-current testing, or related electrical test methods.
  • Experience with BEOL integration, superconducting interconnect, low-loss dielectrics, air bridges, TSVs, flip-chip, interposers, or cryogenic packaging.
  • Familiarity with superconducting-qubit architectures such as transmon, fluxonium, tunable couplers, resonator read-out, or parametric amplification.
  • Experience with DOE, yield learning, variability modeling, root-cause analysis, SPC, or reliability assessment in R&D or manufacturing environments.

Additional Information
GlobalFoundries is an equal opportunity employer, cultivating a diverse and inclusive workforce. We believe having a multicultural workplace enhances productivity, efficiency and innovation whilst our employees feel truly respected, valued and heard. As an affirmative employer, all qualified applicants are considered for employment regardless of age, ethnicity, marital status, citizenship, race, religion, political affiliation, gender, sexual orientation and medical and/or physical abilities. All offers of employment with GlobalFoundries are conditioned upon the successful completion of background checks, medical screenings as applicable and subject to the respective local laws and regulations.
ocess flows.
Expected Salary Range
$98,000.00 - $176,000.00
The exact Salary will be determined based on qualifications, experience and location.
If you need a reasonable accommodation for any part of the employment process, please contact us by email at usaccommodations@gf.com and let us know the nature of your request and your contact information. Requests for accommodation will be considered on a case-by-case basis. Please note that only inquiries concerning a request for reasonable accommodation will be responded to from this email address.
An offer with GlobalFoundries is conditioned upon the successful completion of pre-employment conditions, as applicable, and subject to applicable laws and regulations.
GlobalFoundries is fully committed to equal opportunity in the workplace and believes that cultural diversity within the company enhances its business potential. GlobalFoundries goal of excellence in business necessitates the attraction and retention of highly qualified people. Artificial barriers and stereotypic biases detract from this objective and may be illegally discriminatory.
All policies and processes which pertain to employees including recruitment, selection, training, utilization, promotion, compensation, benefits, extracurricular programs, and termination are created and implemented without regard to age, ethnicity, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, sexual orientation, gender identity or expression, veteran status, or any other characteristic or category specified by local, state or federal law

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