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Superconducting Jobs in Chicago, IL (NOW HIRING)

Quantum Postdoc Associate

Batavia, IL · On-site

$69.80K - $92.60K/yr

Fermilab and the Superconducting Quantum Materials and Systems Center (SQMS) are seeking a Postdoctoral Research Associate to contribute to research in quantum sensing and superconducting quantum ...

... Superconducting Technology Division (APS-TD), Design/Drafting Group. Pay Rate: $46/hr - $52/hr + Per diem Location: Onsite (Batavia, IL) Citizenship: U.S. Citizenship Required Work Schedule ...

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Accelerator Physics & Superconducting Technology Division (APS-TD) - Fermilab Fermilab is seeking an experienced Mechanical Designer to support the APS-TD Design/Drafting Group. The Designer will ...

Mechanical Designer

Batavia, IL · On-site

$45 - $55/hr

Impact Join Fermilab's Accelerator Physics & Superconducting Technology Division (APS-TD) Design/Drafting Group and contribute to nationally significant accelerator and superconducting technology ...

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Quantum Computing Engineer I

Batavia, IL · On-site

$79.30K - $104.40K/yr

Integrating and testing microwave systems for superconducting quantum computing. * Deploying hardware and software controls for qubit characterization and readout, as well as supporting scientific ...

Engineering Physicist 1

Batavia, IL · On-site

$70.80K - $93.20K/yr

Join the Fermilab team in the Applied Physics and Superconducting Technology Directorate (APS-TD) as an Engineering Physicist . In this role, you will join the Test and Instrumentation (T&I ...

Cryogenic Engineering Co-op

Batavia, IL · On-site

$21.26 - $25.93/hr

The Applied Physics & Technology Directorate (APS-TD) conducts highly innovative research and development programs in superconducting magnets and superconducting radio frequency cavities for next ...

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Superconducting information

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How much do superconducting jobs pay per hour?

As of May 28, 2026, the average hourly pay for superconducting in Chicago, IL is $23.69, according to ZipRecruiter salary data. Most workers in this role earn between $19.09 and $26.73 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Superconducting Engineer, and why are they important?

To thrive as a Superconducting Engineer, you need a solid background in physics, materials science, and electrical engineering, often supported by an advanced degree in a related field. Familiarity with cryogenic systems, electromagnetic simulation software, and laboratory instrumentation is typical, along with relevant certifications or research experience. Strong analytical thinking, attention to detail, and effective teamwork skills help you excel in collaborative research and problem-solving environments. These competencies are vital for advancing superconducting technologies and ensuring precise, innovative solutions in research or industrial applications.

What are the typical team dynamics and collaboration opportunities for professionals working in superconducting research or engineering roles?

Professionals in superconducting roles often work within multidisciplinary teams that include physicists, materials scientists, engineers, and technicians. Collaboration is key, as projects typically involve integrating theoretical research with practical applications, such as developing advanced magnets or quantum devices. Regular meetings, joint problem-solving sessions, and cross-functional project planning are common, fostering a highly collaborative and innovative environment. Team members are encouraged to share findings, troubleshoot experimental issues together, and contribute to publications or patents, making communication and teamwork essential for success.

What are superconducting jobs?

Superconducting jobs typically refer to roles that work with materials or systems exhibiting superconductivity, which is the property of zero electrical resistance at very low temperatures. These jobs can be found in research, engineering, and manufacturing sectors, focusing on developing superconducting materials, designing superconducting magnets, or building applications like MRI machines and quantum computers. Professionals in this field may have backgrounds in physics, materials science, or electrical engineering. Their work often involves experimental research, product development, and collaboration with multidisciplinary teams to advance superconducting technologies.

What is the difference between Superconducting vs Electrical Engineer?

AspectSuperconductingElectrical Engineer
Required CredentialsBachelor's or higher in physics, materials science, or related fields; specialized knowledge in superconductivityBachelor's or higher in electrical engineering; professional engineering license often preferred
Work EnvironmentResearch labs, advanced materials facilities, academia, specialized industriesManufacturing plants, power systems, electronics design, corporate offices
Industry UsageResearch institutions, quantum computing, energy transmission, scientific researchPower generation, electronics, telecommunications, automation

Superconducting professionals focus on materials and systems that exhibit zero electrical resistance at low temperatures, often working in research or specialized industries. Electrical engineers have a broader scope, designing and maintaining electrical systems across various sectors. While both roles require a strong technical background, superconducting roles are more specialized and research-oriented, whereas electrical engineering is more application-driven and industry-wide.

What job categories do people searching Superconducting jobs in Chicago, IL look for? The top searched job categories for Superconducting jobs in Chicago, IL are:
Postdoctoral Appointee - Superconducting Devices

Postdoctoral Appointee - Superconducting Devices

Argonne National Laboratory

Lemont, IL • On-site

$72.88K - $121.47K/yr

Full-time

Posted 25 days ago


Job description

Postdoctoral Appointee - Superconducting Devices for Multipixel Single-Photon Detection and Multiplexed Readout

Argonne National Laboratory invites applications for a postdoctoral research position in experimental physics and superconducting device development, with a focus on advancing multipixel single-photon camera technology and multiplexed readout for quantum information science applications.

As part of a multidisciplinary team spanning multiple Argonne divisions, you will contribute to the design, fabrication, and characterization of superconducting devices based on high kinetic inductance materials, while having the opportunity to shape a new research capability with broad impact across quantum networking, communications, and computing.

Research Focus

  • Design and fabricate superconducting devices exploiting the nonlinear kinetic inductance of thin superconducting films, including microwave resonators for frequency-domain multiplexed readout of single photon detectors (kinetic inductance current sensors)

  • Develop and characterize superconducting nanowire single-photon detectors (SNSPDs) using high kinetic inductance materials such as NbN, TiN, and NbTiN, targeting high detection efficiency from visible to telecom wavelengths

  • Implement and test scalable readout architectures for nanowire arrays, including multiplexing concepts based on superconducting cryogenic switches (hTron, fTron)

  • Perform low-noise cryogenic measurements of device performance, including timing jitter, dark count rate, detection efficiency, and resonator quality factors

  • Iterate rapidly on fabrication processes and readout circuit designs informed by device characterization and electromagnetic simulations

  • Contribute to the development of complete instrument systems for characterization of solid-state single-photon emitters, including photon correlation and spectroscopy measurements

About the Team

You will join a collaborative team of physicists and engineers drawn from Argonne's High Energy Physics (HEP), X-ray Science (XSD), and Materials Science (MSD) divisions. The team brings together deep expertise in superconducting detector arrays, thin-film materials development, nanofabrication, cryogenic instrumentation, quantum communications, and solid-state quantum emitter systems. The project leverages existing Argonne infrastructure including dilution refrigerators, adiabatic demagnetization refrigerators, low-noise DC and RF measurement equipment, and cleanroom fabrication facilities including at the Center for Nanoscale Materials (CNM).

Position Requirements

  • Recent or soon-to-be-completed PhD (within the last 0-5 years) in physics, electrical engineering, materials science, or a related discipline

  • Demonstrated experience with superconducting devices or similar quantum/low-temperature technologies, particularly design, fabrication, and/or measurement

  • Proficiency in low-noise cryogenic measurement techniques at millikelvin to few-kelvin temperatures

  • Ability to model Argonne's core values of impact, safety, respect, integrity, and teamwork

Preferred Knowledge, Skills, and Experience

  • Experience with superconducting nanowire single-photon detectors (SNSPDs), transition-edge sensors (TESs), or kinetic inductance detectors (KIDs)

  • Experience with cleanroom microfabrication processes, including thin-film deposition (e.g., magnetron sputtering), electron-beam or optical lithography, and dry/wet etching

  • Familiarity with microwave resonator design, characterization, and RF/microwave measurement techniques

  • Electromagnetic simulation experience (e.g., Sonnet, Ansys HFSS/Lumerical, or similar tools)

  • Experience with data acquisition, instrument control, and data analysis in Python or similar languages

  • Knowledge of quantum optics measurements such as photon correlation functions or photon-number-resolved detection

  • Familiarity with aspects of condensed matter and BCS superconductivity theory applicable to high kinetic inductance superconducting materials

Job Family

Postdoctoral

Job Profile

Postdoctoral Appointee

Worker Type

Long-Term (Fixed Term)

Time Type

Full timeThe expected hiring range for this position is $72,879.00-$121,465.00.

Please note that the pay range information is a general guideline only. The pay offered to a selected candidate will be determined based on factors such as, but not limited to, the scope and responsibilities of the position, the qualifications of the selected candidate, business considerations, internal equity, and external market pay for comparable jobs. Additionally, comprehensive benefits are part of the total rewards package.

Click here to view Argonne employee benefits!

As an equal employment opportunity employer, and in accordance with our core values of impact, safety, respect, integrity and teamwork, Argonne National Laboratory is committed to a safe and welcoming workplace that fosters collaborative scientific discovery and innovation. Argonne encourages everyone to apply for employment. Argonne is committed to nondiscrimination and considers all qualified applicants for employment without regard to any characteristic protected by law.

Argonne employees, and certain guest researchers and contractors, are subject to particular restrictions related to participation in Foreign Government Sponsored or Affiliated Activities, as defined and detailed in United States Department of Energy Order 486.1A. You will be asked to disclose any such participation in the application phase for review by Argonne's Legal Department.

All Argonne offers of employment are contingent upon a background check that includes an assessment of criminal conviction history conducted on an individualized and case-by-case basis. Please be advised that Argonne positions require upon hire (or may require in the future) for the individual be to obtain a government access authorization that involves additional background check requirements. Failure to obtain or maintain such government access authorization could result in the withdrawal of a job offer or future termination of employment.