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Quantum Fabrication Jobs (NOW HIRING)

You will collaborate closely with cross-functional teams spanning device design, cryogenic/microwave hardware, control systems, fabrication, and software to push the boundaries of quantum computing ...

Quantum Research Physicist

Washington, DC · On-site

$115K - $215K/yr

Qubit development utilizing trapped ions and micro-fabrication techniques. * Quantum characterization, verification, and validation. * Fault Tolerant Quantum Computing/Quantum Error Correction

Quantum Engineer

Berkeley, CA · On-site

$155K - $200K/yr

You will collaborate closely with cross-functional teams spanning device design, cryogenic/microwave hardware, control systems, fabrication, and software to push the boundaries of quantum computing ...

Showing results 21-40

Quantum Fabrication information

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$12

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$35

How much do quantum fabrication jobs pay per hour?

As of Aug 7, 2026, the average hourly pay for quantum fabrication in the United States is $21.45, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $24.52 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in quantum fabrication?

To thrive in Quantum Fabrication, you need a solid background in physics, materials science, and nanofabrication techniques, often supported by an advanced degree in a related field. Familiarity with cleanroom protocols, lithography systems, electron microscopes, and quantum measurement tools is typically required. Attention to detail, problem-solving abilities, and effective teamwork are vital soft skills in this role. These skills and qualities ensure precision in device fabrication, drive innovation, and enable successful collaboration in the development of quantum technologies.

What is quantum fabrication?

Quantum fabrication refers to the process of designing, constructing, and assembling devices and materials at the quantum scale, often for use in quantum computing, quantum communication, and advanced sensing. This field involves techniques like lithography, thin film deposition, and etching to create structures small enough to manipulate quantum states. Professionals in quantum fabrication work in cleanrooms and use highly specialized equipment to ensure the precision needed for quantum devices. As quantum technologies advance, the demand for skilled quantum fabrication experts continues to grow.

What is the difference between Quantum Fabrication vs Nanofabrication?

AspectQuantum FabricationNanofabrication
Required CredentialsPhysics or engineering degrees, specialized training in quantum technologiesEngineering or science degrees, focus on materials and device fabrication
Work EnvironmentCleanrooms, laboratories working with quantum devicesCleanrooms, manufacturing facilities for nanoscale devices
Industry UsageQuantum computing, quantum sensorsElectronics, semiconductor industry, nanotechnology research
Common Search/ComparisonYesYes

Quantum Fabrication involves creating devices for quantum technologies, requiring specialized knowledge in quantum physics. Nanofabrication focuses on manufacturing nanoscale structures for various applications like electronics and materials science. While both work in cleanroom environments and require precision, their applications and technical focus differ significantly.

What are some common challenges encountered in a quantum fabrication role, and how are they typically addressed?

Quantum Fabrication professionals often face challenges related to maintaining ultra-clean environments and achieving precise control during nanofabrication processes, as even microscopic contamination or slight deviations can impact device performance. Collaborating closely with multidisciplinary teams—such as physicists, engineers, and material scientists—is crucial for troubleshooting and optimizing fabrication procedures. Continuous learning and adaptability are important, as the field evolves rapidly with new materials and techniques. Most organizations provide access to advanced cleanroom facilities and encourage knowledge sharing to help address these challenges.
More about Quantum Fabrication jobs
What cities are hiring for Quantum Fabrication jobs? Cities with the most Quantum Fabrication job openings:
What states have the most Quantum Fabrication jobs? States with the most job openings for Quantum Fabrication jobs include:
Infographic showing various Quantum Fabrication job openings in the United States as of August 2026, with employment types broken down into 91% Full Time, 3% Part Time, 1% Temporary, 3% Contract, and 2% Nights. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution, with an average salary of $44,624 per year, or $21.5 per hour.

Quantum Engineering Postdoctoral Fellow

AM-Applied Mathematics and Computational Research

Bodega Bay, CA • On-site

$6.9K - $8.0K/mo

Full-time

Medical, Retirement, PTO

Re-posted 4 days ago


Job description

Berkeley Lab's Applied Mathematics Computational Research Division (AMCR) has an immediate opening in the Quantum Information Science and Technology Group (QuIST) for a Quantum Engineering Postdoctoral Fellow under the programs of Advanced Quantum Testbed (AQT) and Quantum System Accelerator (QSA). The primary goal of the position will focus on materials and circuit electric field engineering  to understand the material-performance causality of superconducting qubits, including the optimization of electromagnetic design and development of new metrology and fabrication techniques. The position will have access to the state-of-the-art superconducting circuit fabrication facility, quantum measurement lab, and advanced material characterization tools at Lawrence Berkeley National Laboratory. The position will also be on the team for development and fabrication of multiqubit, multilayer quantum processor unit (QPU), where the candidate will work with all teams at Berkeley Lab to build up full-stack superconducting QPU for scientific research.

You will:

  • Performing electromagnetic simulation of qubit circuits with novel designs to achieve high coherence qubits.

  • Developing cleanroom metrology for superconducting qubit devices, especially CMOS in-line metrology, in lab as well as in collaboration with industrial partners.

  • Fabrication process development and optimization to improve device materials and characterize the performance of superconducting qubit devices.

  • Fabrication of multiqubit, multilayer quantum processor developed at Berkeley Lab.

  • Present and publish experiment results in internal and external meetings and journals.

  • Support and lead the collaboration projects with quantum computing industrial partners.

Desired Duties:

  • Mentoring graduate students.

  • Support or lead writing including but not limited to program reports, grants, and papers.

 

We are looking for:

  • Ph.D. degree in Physics, Applied Physics, Electrical Engineering, Material Science, or a related field.

  • Experience in cleanroom/nanofabrication processes, with an emphasis on the hands-on experience and knowledge on cleanroom metrology for device performance/yield characterization. 

  • Experience in  one or more of the responsibilities/research areas in the following:

    • Solid state quantum computing platform, including but not limited to: superconducting qubits, spin qubit, semiconductor nanowire/topological qubits, rare-earth qubit, nanophotonic. 

    • Microwave circuit design and simulation (e.g. EM solvers, network analysis)

    • Complex structure device fabrication, including CMOS multilayer devices, flip-chip devices, microwave airbridges, and/or RF circuit devices.

  • Relevant publication record and demonstration of proficient written and verbal presentation of scientific results.

  • Ability to work effectively in a collaborative environment.

  • Ability to mentor and direct the work of students.

  • Willingness to occasional traveling to collaborators' sites and conferences.

 

Desired skills/knowledge:

  • Experience in superconducting qubits design, fabrication, and measurement. Especially in surface participation simulation and material loss tangent.

  • Familiarity with material - device causality, i.e., connecting film microstructure, surface chemistry, to device physics and performance.

  • Experience with surface treatment and surface metrology/measurement.

 

We're here for the same mission, to bring science solutions to the world. Join our team and YOU will play a supporting role in our goal to address global challenges! Have a high level of impact and work for an organization associated with 17 Nobel Prizes!

Why join Berkeley Lab?

We invest in our employees by offering a total rewards package you can count on:

  • Exceptional health and retirement benefits, including pension or 401K-style plans

  • Opportunities to grow in your career - check out our Tuition Assistance Program

  • A culture where you'll belong - we are invested in our teams! 

  • In addition to accruing vacation and sick time, we also have a Winter Holiday Shutdown every year.

  • Parental bonding leave (for both mothers and fathers)

  • Pet insurance 

Additional information:

  • Application date: Candidate consideration will start on June 15, 2026, but applications will be accepted until the job posting is removed in a rolling basis.

  • Appointment type: This is a full-time, 2 year, postdoctoral appointment with the possibility of renewal based upon satisfactory job performance, continuing availability of funds and ongoing operational needs. You must have less than 3 years of paid postdoctoral experience. Salary for Postdoctoral positions depends on years of experience post-degree.

  • Salary range: The salary range for this position is $6,924 - $8,026 and is expected to start at $6,924 or above. Postdoctoral positions are paid on a step schedule per union contract and salaries will be predetermined based on postdoctoral step rates. Each step represents one full year of completed post-Ph.D. postdoctoral experience.

  • Background check: This position is subject to a background check. Any convictions will be evaluated to determine if they directly relate to the responsibilities and requirements of the position. Having a conviction history will not automatically disqualify an applicant from being considered for employment.

  • Work modality: Work may be performed on-site, hybrid, full-time telework. The primary location for this role is Lawrence Berkeley National Lab, 1 Cyclotron Road, Berkeley, CA. Work must be performed within the United States. A REAL ID or other acceptable form of identification is required to access Berkeley Lab sites (for more information click here). 

  • Union Represented:This position is represented by a union for collective bargaining purposes.

Want to learn more about working at Berkeley Lab? Please visit: careers.lbl.gov

Equal Employment Opportunity Employer: The foundation of Berkeley Lab is our Stewardship Values: Team Science, Service, Trust, Innovation, and Respect; and we strive to build community with these shared values and commitments. Berkeley Lab is an Equal Opportunity Employer. We heartily welcome applications from all who could contribute to the Lab's mission of leading scientific discovery, excellence, and professionalism. In support of our rich global community, all qualified applicants will be considered for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, age, protected veteran status, or other protected categories under State and Federal law.

Misconduct Disclosure Requirement: As a condition of employment, the finalist will be required to disclose if they are subject to any final administrative or judicial decisions within the last seven years determining that they committed any misconduct, are currently being investigated for misconduct, left a position during an investigation for alleged misconduct, or have filed an appeal with a previous employer.