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Quantum Computing Jobs in Connecticut (NOW HIRING)

... quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction: Familiar with linear algebra curricula and common challenges such as understanding abstract vector spaces, computing ...

Linear Algebra Tutor

New Haven, CT · Remote

$18 - $40/hr

... quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction: Familiar with linear algebra curricula and common challenges such as understanding abstract vector spaces, computing ...

Linear Algebra Tutor

Hartford, CT · Remote

$18 - $40/hr

... quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction: Familiar with linear algebra curricula and common challenges such as understanding abstract vector spaces, computing ...

Linear Algebra Tutor

Norwalk, CT · Remote

$18 - $40/hr

... quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction: Familiar with linear algebra curricula and common challenges such as understanding abstract vector spaces, computing ...

Linear Algebra Tutor

Stamford, CT · Remote

$18 - $40/hr

... quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction: Familiar with linear algebra curricula and common challenges such as understanding abstract vector spaces, computing ...

Showing results 41-51

Quantum Computing information

See Connecticut salary details

$27.6K

$131.7K

$215.3K

How much do quantum computing jobs pay per year?

As of Aug 19, 2026, the average yearly pay for quantum computing in Connecticut is $131,715.00, according to ZipRecruiter salary data. Most workers in this role earn between $86,309.00 and $160,576.00 per year, depending on experience, location, and employer.

What is quantum computing?

A Quantum Computing job involves researching, developing, and applying quantum mechanics principles to create advanced computing systems. Professionals in this field work on algorithms, hardware, and software that leverage quantum bits (qubits) to solve complex problems faster than classical computers. Roles include quantum software engineer, quantum physicist, and research scientist, often requiring expertise in physics, mathematics, and computer science. These jobs are typically found in academia, tech companies, and government research labs focused on advancing quantum technology.

What does someone working in quantum computing do?

Professionals in quantum computing spend their days developing and testing quantum algorithms, collaborating with physicists and engineers on hardware advancements, and running experiments on quantum simulators or actual devices. They often work in interdisciplinary teams and engage in regular code reviews, technical discussions, and research collaborations. Keeping up with the latest scientific literature and participating in internal or external seminars is also common. This dynamic workflow ensures that team members stay informed about cutting-edge developments and continuously contribute to innovative projects.

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

To thrive in quantum computing, you typically need a strong background in physics, mathematics, and computer science, often supported by a graduate degree in a relevant field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware platforms, and experience with simulation tools are frequently required. Analytical thinking, problem-solving, and the ability to communicate complex concepts clearly are valuable soft skills. These competencies are essential for developing and implementing quantum algorithms, collaborating on interdisciplinary teams, and advancing this rapidly evolving field.

Is it hard to get a job in quantum computing?

Getting a job in quantum computing can be competitive due to the specialized skills required, such as knowledge of quantum algorithms, programming languages like Qiskit or Cirq, and a strong background in physics or computer science. Candidates often need advanced degrees and experience with quantum hardware or simulation tools to improve their chances.

Is quantum computing a good career?

Quantum computing is a rapidly growing field with roles such as quantum software engineers, researchers, and hardware developers. It requires strong backgrounds in physics, computer science, and mathematics, along with skills in programming languages like Python and familiarity with quantum algorithms. Careers in this area can be highly specialized and competitive but offer opportunities in academia, industry, and government research labs.

Is quantum computing well paid?

Quantum computing professionals, such as researchers and engineers, typically earn high salaries due to the specialized skills and advanced knowledge required in the field. Salaries can vary based on experience, education, and location, but generally, roles in quantum computing are well compensated compared to many other tech positions. Advanced degrees and expertise in quantum algorithms, hardware, or software can further increase earning potential.

What are the most commonly searched types of Quantum Computing jobs in Connecticut?

The most popular types of Quantum Computing jobs in Connecticut are:

What are popular job titles related to Quantum Computing jobs in Connecticut?

For Quantum Computing jobs in Connecticut, the most frequently searched job titles are:

What cities in Connecticut are hiring for Quantum Computing jobs?

Cities in Connecticut with the most Quantum Computing job openings:

Infographic showing various Quantum Computing job openings in Connecticut as of August 2026, with employment types broken down into 84% Full Time, 9% Part Time, 2% Temporary, and 5% Contract. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution, with an average salary of $131,715 per year, or $63.3 per hour.

Senior RF & Electromagnetics Engineer - Future Opportunities

Hyperfine

Guilford, CT • On-site

$106K - $146K/yr

Full-time

Posted 16 days ago


Job description

Join Our Talent Community!
This is an evergreen posting and not an active opening. We are always interested in connecting with talented individuals who are passionate about our mission. By applying to this posting, you'll join our Talent Community and be considered for future opportunities should a position that aligns with your skills and experience become available in the future.
About Us
Hyperfine, Inc. (Nasdaq: HYPR) is the groundbreaking health technology company that has redefined brain imaging with the Swoop® system-the first FDA-cleared, portable, ultra-low-field, magnetic resonance brain imaging system capable of providing imaging at multiple points of care in a healthcare facility. Our mission is to revolutionize patient care globally through transformational, accessible, clinically relevant diagnostic imaging. Learn More
About The Role
Job Title: Senior RF & Electromagnetics Engineer
Location:Guilford, CT, USA
The Senior RF & Electromagnetics Engineer, designs, tests, characterizes, and optimizes RF coils and associated analog electronics for the low MHz frequency domain. Secondary to this, they may contribute significantly to the electromagnetic subsystem of the ultra low field MRI system, including B0 magnet and gradient system. They develop manufacturing and design verification processes to ensure manufactured products meet design goals with efficiency and cost-effectiveness. The senior engineer is expected to be able to conduct research and development activities independently when needed, collaborate cross-functionally, and provide guidance to junior engineers.
Key Responsibilities
  • Conduct research and development efforts related to radiofrequency coils, sensors, preamplifiers, and analog circuitry for portable MRI applications.
  • Simulate, test, and optimize coil and RF electronics designs.
  • Collaborate cross-functionally with systems engineers, mechanical engineers, electrical engineers, and MR scientists, product management and senior leadership to ensure seamless integration of RF and electromagnetic subsystems.
  • Develop and validate novel hardware-based EM-noise reduction methods for ultra-low-field MRI.
  • Partner with vendors and manufacturing teams to guide electromagnetic system prototyping, assembly, production scale-up and QA processes.
  • Document designs, models, and tools in accordance with the company's quality system requirements.

Additional Responsibilities:
  • Contribute to research and development efforts related to low-field magnet, gradient coil, and shield design for portable MRI applications.
  • Develop and validate novel magnet characterization methods, including field mapping, eddy-current mapping and thermal stability assessments.

Knowledge, Skill & Abilities:
  • Strong background in the theory of electromagnetism.
  • Working knowledge of analog circuit design and prototyping.
  • Experience with radiofrequency circuits and phased array design.
  • Strong understanding of RF principles including coil design, signal transmission, and pre-amplifiers.
  • Experience of physics-based modeling with appropriate mathematical tools.
  • Ability to critically assess research papers and patents on topics relating to MRI hardware, magnetostatics, and RF engineering.
  • Experience with data acquisition and automation.
  • Familiarity with lab equipment like oscilloscope/VNA.
  • Excellent communication and documentation skills for interdisciplinary collaboration and knowledge transfer.

Required Education & Experience:
  • Bachelor's degree in physics, engineering physics, or electrical engineering and 5 years' related work experience; or
  • Equivalent combination or education and experience (e.g., Master's degree with 3 years' experience or a PhD degree in a relevant field).

Preferred Qualifications:
  • Research or work experience in the following areas: MRI, experimental atomic physics, experimental quantum computing, plasma physics, radio astronomy, or accelerator science.
  • Experience with electromagnetics simulation tools, such as COMSOL, ANSYS Maxwell, CST/Opera, etc.
  • Ability to design mechanical parts, including 3D CAD modeling and creating engineering drawings for fabrication.
  • Experience of mechanical prototyping such as 3D printing, laser cutting, and use of lathe and milling machines.
  • Working knowledge of MRI system architecture.
  • Programming with Python

Physical Demands:
  • This is an on-site role based out of Hyperfine's office in Guilford, CT.
  • Ability to work in a laboratory and prototype environment, including safe handling of magnets and power electronics. Ability to speak and write in English
  • Available nights, weekends, and holidays as business needs require.
  • Ability to occasionally lift up to 40lbs.
  • Ability to use basic electrical & mechanical tools (screwdriver, wrenches, crimping tools, oscilloscope, etc).
  • Travel up to 5% of time for business needs (e.g., vendor and contract manufacturer site visits).

Work Authorization: Applicants must be authorized to work for ANY employer in the U.S. We are unable to sponsor or take over sponsorship now or in the future of any employment Visa.
Compensation: Hyperfine's Total Rewards Package includes a competitive base salary and eligibility to participate in our corporate bonus and equity plans. Individual compensation packages are based on various factors unique to each candidate including skill set, relevant experience, qualifications, location, position level, and other job-related reasons.
Agency Resumes: We do not accept resumes from recruitment agencies without a prior agreement in place. Any unsolicited resumes submitted by agencies will be considered the property of Hyperfine and will not be subject to any fees or charges if the candidate is hired. To explore a recruiting partnership with Hyperfine for future placements, you must contact People@Hyperfine.io.
Please note that submitting an application does not indicate that there is a current vacancy. If a position becomes available that matches your background and experience, a member of our Talent Acquisition team may contact you regarding next steps.