1

Quantum Electrical Engineer Jobs in Tennessee (NOW HIRING)

PhD in physics, applied physics, electrical engineering, or closely related field * Work in quantum optics and quantum computing (ideally previous work with single photons and/or gate-based quantum ...

Patent Agent

Nashville, TN ยท Remote

$100K - $170K/yr

Bachelor's degree in Chemical Engineering, Computer Science, Computer or Electrical Engineering ... Artificial Intelligence or Quantum Computing experience a plus. The above is intended to describe ...

Patent Agent

Chattanooga, TN ยท Remote

$100K - $170K/yr

Bachelor's degree in Chemical Engineering, Computer Science, Computer or Electrical Engineering ... Artificial Intelligence or Quantum Computing experience a plus. The above is intended to describe ...

Quantum Electrical Engineer information

See Tennessee salary details

$45.8K

$100.8K

$152.5K

How much do quantum electrical engineer jobs pay per year?

As of Aug 26, 2026, the average yearly pay for quantum electrical engineer in Tennessee is $100,828.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,300.00 and $119,800.00 per year, depending on experience, location, and employer.

What is a quantum electrical engineer?

Quantum Electrical Engineers are professionals who design, develop, and test electronic systems and devices that operate based on quantum mechanical principles. They work on technologies such as quantum computers, quantum sensors, and quantum communication systems, integrating quantum theory with electrical engineering. Their work often involves research and development in both hardware and software to advance emerging quantum technologies.

What are the key skills and qualifications needed to thrive as a quantum electrical engineer?

To thrive as a Quantum Electrical Engineer, you need a strong background in electrical engineering, quantum mechanics, and advanced mathematics, typically supported by a relevant degree such as a master's or PhD. Experience with quantum simulation software, cryogenic systems, and laboratory instrumentation, along with familiarity with programming languages like Python or MATLAB, is highly valued. Analytical thinking, problem-solving abilities, and strong teamwork and communication skills help professionals excel in this multidisciplinary field. These competencies are crucial for advancing quantum technology research and development, ensuring innovation and practical implementation in this cutting-edge industry.

How does a quantum electrical engineer typically collaborate with multidisciplinary teams on quantum technology projects?

Quantum Electrical Engineers frequently work alongside physicists, software engineers, and materials scientists to design and optimize quantum devices and systems. Collaboration is key, as these engineers integrate electrical engineering principles with quantum mechanics, ensuring that hardware meets the stringent requirements for quantum coherence and signal integrity. Regular team meetings, joint troubleshooting sessions, and cross-functional project planning are common, enabling efficient progress from initial design through to experimental validation and scaling. Such teamwork helps bridge the gap between theoretical concepts and practical, scalable quantum technology.

What is the difference between Quantum Electrical Engineer vs Quantum Hardware Engineer?

AspectQuantum Electrical EngineerQuantum Hardware Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Physics, or related fields; knowledge of quantum electronicsBachelor's or Master's in Electrical Engineering, Physics, or related fields; focus on hardware design
Work EnvironmentResearch labs, tech companies, industry R&DLaboratories, manufacturing facilities, research institutions
Employer & Industry UsageQuantum computing companies, tech firms, research institutionsQuantum hardware startups, research labs, semiconductor companies

Both roles often require similar educational backgrounds and work in related environments, but Quantum Electrical Engineers focus more on electronic components and circuit design for quantum systems, while Quantum Hardware Engineers concentrate on building and testing quantum devices and hardware components.

Are quantum electrical engineers in demand?

Quantum electrical engineers are in increasing demand due to advancements in quantum computing, quantum communication, and related technologies. They typically require expertise in quantum mechanics, electrical engineering, and specialized tools like cryogenic systems and quantum processors, making their skills highly sought after in research labs and tech companies investing in quantum technologies.

Can an electrical engineer become a quantum electrical engineer?

Yes, an electrical engineer can become a quantum electrical engineer by gaining specialized knowledge in quantum mechanics, quantum computing, and related technologies through advanced education or training. Developing skills in areas such as quantum devices, cryogenics, and programming quantum systems is essential for this transition.

What cities in Tennessee are hiring for Quantum Electrical Engineer jobs?

Cities in Tennessee with the most Quantum Electrical Engineer job openings:

Infographic showing various Quantum Electrical Engineer job openings in Tennessee as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $100,828 per year, or $48.5 per hour.

Senior Physicist, Quantum Memory R&D

Chattanooga, TN โ€ข On-site

IonQ
IT Servicesย โ€ขย 51 - 200 employees

Full-time

Posted 11 days ago


Job description

Location: Chattanooga, TN (Onsite)
Travel: Up to 10%, domestic or international.
Job ID:
ย  1789

The Role:ย 

IonQ is developing the world's most powerful full-stack quantum computer based on trapped-ion technology. We are pushing past the limits of classical physics and current supercomputing technology to unlock a new era of computing. Quantum computing has the potential to impact every area of human society for the better. IonQ's computers will soon redefine industries like medicine, materials science, finance, artificial intelligence, machine learning, cryptography, and more. IonQ is at the forefront of this technological revolution.

We are looking for a Senior Physicist for development of IonQ's silicon vacancy (SiV) quantum memory platform. As a Senior Physicist, you'll be part of a cross-functional team whose mission is to lead IonQ on its journey to build the world's best quantum technologies to solve the world's most complex problems.ย 

In this role, you will be an integral part of the commercialization process for IonQ's SiV quantum memories, with applications across quantum computing, networking, and sensing. You will develop and mature key electrical and optical subsystems for defect-center based quantum memory nodes. Example projects include development and integration of new hardware for integration with SiV memory nodes, and working with IonQ customers and collaborators to implement and test new applications and use-cases for quantum networks and memories.

Responsibilities:

  • Collaborate with IonQ's industry, government, and academic partners, as well as internal teams, to implement new use-cases and applications using the SiV quantum memory platformย 
  • Evaluate and test new hardware (e.g. pair sources, sensors, etc.) for compatibility with SiV memory nodes, for example, to add new capabilities to the network, or to enable new distributed applications
  • Coordinate with other teams internally at IonQ and/or with external vendors to develop or improve memory system subcomponents and software as needed

Requirements:

  • PhD in physics, applied physics, electrical engineering, or closely related field
  • Work in quantum optics and quantum computing (ideally previous work with single photons and/or gate-based quantum systems)
  • Experience designing and testing complex opto-mechanical and opto-electronical setups
  • Experience in implementing applications and use-cases using quantum hardware

Preferred Qualifications:

  • Experience working with defect center and/or solid-state qubits
  • Experience in optically-mediated entanglement protocols between qubits
  • Experience in writing software for lab environments (preferred language: Python)

The total compensation package includes base, bonus, equity, and a range of benefit options found on our career site.ย