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Quantum Jobs (NOW HIRING)

Quantum Photonics Engineer About Qunett Qunett is developing the foundational hardware layer for quantum networking. Our mission is to build scalable, field-deployable quantum networks through solid ...

Sales Manager - Quantum Solutions at Quantum Machines - East Coast USA Remote (Sales). Quantum Machines is a global leader in control systems for quantum computing, a field on the verge of ...

Xanadu's mission is to build quantum computers that are useful and available to people everywhere. At Xanadu, we are learners, innovators, researchers, collaborators, and problem solvers. We are ...

Quantum Systems Engineer

San Diego, CA · On-site

$165K - $200K/yr

Join our fast-paced and passionate team as a Quantum Systems Engineer. As we scale, you will be instrumental in building our foundation from the ground up. This is a dynamic, hands-on role for a self ...

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$96.2K

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How much do quantum jobs pay per year?

As of Sep 9, 2026, the average yearly pay for quantum in the United States is $96,177.00, according to ZipRecruiter salary data. Most workers in this role earn between $64,500.00 and $125,500.00 per year, depending on experience, location, and employer.

What is a quantum job?

Quantum jobs refer to roles that involve working with quantum technologies, such as quantum computing, quantum cryptography, and quantum sensing. These positions may include research scientists, quantum software engineers, hardware developers, and application specialists. Professionals in this field use principles of quantum mechanics to solve complex problems, develop new algorithms, and advance technology beyond classical computing capabilities. The quantum industry is rapidly growing, offering opportunities in academia, industry, and government sectors.

What skills and qualifications are needed to thrive as a quantum computing researcher?

To thrive as a Quantum Computing Researcher, you need a strong background in physics, mathematics, and computer science, typically with a PhD or advanced degree in a related field. Experience with programming languages like Python or Qiskit, and familiarity with quantum hardware and simulation platforms, is essential. Critical thinking, problem-solving, and effective communication help researchers stand out when tackling complex theoretical and experimental challenges. These skills and qualities are vital for driving innovation and advancing practical applications in the rapidly evolving field of quantum technology.

What are common challenges faced by quantum software engineers when working on quantum computing projects?

Quantum software engineers often encounter challenges such as limited availability of stable quantum hardware, rapidly evolving programming frameworks, and the need to bridge classical and quantum computing concepts. Debugging quantum algorithms can be particularly complex due to the probabilistic nature of quantum systems and the lack of conventional debugging tools. Collaborating closely with physicists, hardware engineers, and classical software developers is essential to navigate these challenges and deliver functional, cutting-edge quantum solutions.

What is the difference between Quantum vs Data Scientist?

AspectQuantumData Scientist
Required CredentialsPhysics or Quantum Computing degrees, certifications in quantum algorithmsStatistics, Computer Science, or Data Analytics degrees, certifications in data analysis tools
Work EnvironmentResearch labs, tech companies focusing on quantum techCorporate offices, tech firms, or consulting agencies
Industry UsageQuantum computing, cryptography, advanced researchBusiness analytics, machine learning, data-driven decision making

Quantum and Data Scientist roles share a focus on data and complex problem-solving but differ in their technical expertise and industry applications. Quantum professionals work primarily with quantum algorithms and physics-based research, while Data Scientists analyze large datasets using statistical and machine learning techniques. Both roles are vital in tech-driven industries but serve distinct functions based on their specialized skills.

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.
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What cities are hiring for Quantum jobs?

Cities with the most Quantum job openings:

What are the most commonly searched types of Quantum jobs?

The most popular types of Quantum jobs are:

What states have the most Quantum jobs?

States with the most job openings for Quantum jobs include:

Infographic showing various Quantum job openings in the United States as of September 2026, with employment types broken down into 2% Internship, 73% Full Time, 22% Part Time, and 3% Contract. Highlights an 69% Physical, 4% Hybrid, and 27% Remote job distribution, with an average salary of $96,177 per year, or $46.2 per hour.

Quantum Photonics Engineer

On-site

Other

Medical, Dental, Vision, Retirement, PTO

Posted 11 days ago


Job description

Quantum Photonics Engineer

About Qunett

Qunett is developing the foundational hardware layer for quantum networking. Our mission is to build scalable, field-deployable quantum networks through solid-state quantum memory and networking technologies designed to operate beyond the laboratory and integrate directly with real-world infrastructure. At Qunett, physicists and engineers work hands-on with diamond-based quantum devices, photonics, cryogenic systems, and control electronics to translate fundamental quantum capabilities into practical networked hardware. This is a ground-floor opportunity to help shape how quantum systems communicate, scale, and drive the next generation of secure communication, distributed sensing, and quantum computing. As an early-stage company actively building out its quantum memory and photonics teams, Qunett seeks physicists and engineers who bring technical range, adaptability, and readiness to contribute across disciplines as the technology and team evolve.

Work Location

This is a full-time, onsite position based in Boston, MA.

About the role

Qunett is seeking a Photonics Engineer to contribute to the photonics team building entangled photon sources and quantum frequency conversion systems. This role is highly hands-on, focused on designing, assembling, and characterizing low-noise, phase-coherent, quantum frequency conversion modules for qubit exchange between telecom and visible wavelengths. Efficient methods of bandwidth exchange between broadband photons from SPDC and narrowband light appropriate for color-center qubits will be essential. Free-space implementation and/or integrated photonics approaches are envisioned. This role will focus on nonlinear optics and quantum frequency conversion within the broader photonics efforts at Qunett.

Required qualifications

  • PhD in Physics, Optics, Electrical Engineering, or related field (or MS with equivalent experience)
  • Hands-on experience with nonlinear optics and/or quantum optics in laboratory settings
  • Extensive experience working with spectroscopic-grade laser systems (alignment, safety, modulation, stabilization fundamentals)
  • Experience building and troubleshooting optical setups: free-space and fiber coupling, ABCD matrix analysis and implementation, beam shaping, polarization management, interferometers, and low-noise detection
  • Exposure to single-photon sources and/or single-photon detectors (e.g., SNSPDs/APDs), timing electronics, and basic coincidence measurements
  • Experience using optical design / engineering tools (e.g., Zemax/OpticStudio or equivalent) to design, tolerance, and iterate optical layouts
  • Familiarity with modern software/AI-assisted tools for coding, optimization, and experiment control (e.g., Python-based analysis and automation)

Preferred qualifications

  • Experience with SPDC-based entangled photon sources (Sagnac or interferometric geometries), biphoton characterization, and/or HOM-type interference measurements
  • Experience with wavelength-division multiplexing concepts (filters, DWDM components), insertion-loss management, and polarization gates
  • Experience with laser spectroscopy in solid-state, atomic, or ion systems
  • Exposure to micro/nanofabrication or photonic device integration
  • Familiarity with quantum networking requirements (entanglement distribution, link budgets, interface constraints)

Benefits

  • Comprehensive health coverage including medical, dental, vision, and prescription plans
  • 401(k) retirement plan
  • Equity participation through stock options for all new hires
  • Flexible time off: unlimited PTO, sick leave, and 11 paid holidays
  • Employee support benefits including EAP, caregiver support, healthcare advocacy, and more
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