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Quantum Jobs in Alaska (NOW HIRING)

PhD in physics and an active record of independent research within a specialized subfield (e.g., High Energy/Mathematical Physics, Biophysics/Statistical Physics, Condensed Matter, AMO/Quantum Optics ...

Law Fellow

Anchorage, AK · On-site

$81K/yr

L. 102-477 Plan, meaning they must be a member of a federally-recognized tribe and/or have a Certificate of Degree of Indian BloodApp (CDIB) (regardless of blood quantum), or tribal enrollment card ...

Quantum information

See Alaska salary details

$26.7K

$96.8K

$154.1K

How much do quantum jobs pay per year?

As of Aug 26, 2026, the average yearly pay for quantum in Alaska is $96,843.00, according to ZipRecruiter salary data. Most workers in this role earn between $64,946.00 and $126,368.00 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.

What job categories do people searching Quantum jobs in Alaska look for?

The top searched job categories for Quantum jobs in Alaska are:

What cities in Alaska are hiring for Quantum jobs?

Cities in Alaska with the most Quantum job openings:

Infographic showing various Quantum job openings in Alaska as of August 2026, with employment types broken down into 33% Full Time, and 67% Part Time. Highlights an 100% In-person job distribution, with an average salary of $96,843 per year, or $46.6 per hour.

Principal Physics Consultant - AI Training

Anchorage, AK • Remote

micro1 AI
Software Development • 11 - 50 employees

$80 - $160/hr

Part-time

Posted 23 days ago


Job description

Role Title: Physics Expert (Professor / Principal Investigator)


Role Type: Contractor.


Location: Remote


micro1 is engaging Physics Experts—established Professors or Principal Investigators—to provide high-level domain guidance as part of an impactful project for a customer. In this role, you'll apply your expertise to help train next-generation AI systems. Your work will shape how models learn, reason, and perform through high-quality, real-world input. No prior experience in AI is required — your domain knowledge is what matters.


Scope of Work

  1. Adjudicate and render expert judgment on contested or competing physics arguments, solutions, or interpretations within your subfield.
  2. Compare alternative approaches to the same problem, detailing which is superior, under what assumptions, and in which regimes.
  3. Identify and articulate meta-level criteria for evaluating the robustness and validity of competing physics work, such as key assumptions and breaking points of approximations.
  4. Exercise calibrated confidence by providing authoritative assessments while transparently acknowledging genuine uncertainty or open questions in the field.
  5. Draft defensible written evaluations suitable for review by fellow senior physicists, ensuring clarity and rigor.
  6. Leverage technical tools such as LaTeX, SymPy, Python, and Jupyter to verify or contrast technical claims as needed.
  7. Clearly communicate when a question is unresolved within the field and delineate the pertinent considerations.


Preferred Qualifications

  1. PhD in physics with demonstrated expertise and scholarly impact in your specified subfield.
  2. Current or former Associate Professor, Full Professor, Chair Professor, or Principal Investigator/Group Leader with a track record of independent research leadership.
  3. Ongoing research activity in one or more of these areas: High Energy Physics, Mathematical Physics, Biophysics, Statistical Physics, Condensed Matter, AMO/Quantum Optics, Gravitation, Cosmology, Astrophysics, Quantum Information, or Optical Properties of Materials.
  4. 3–5 recent representative publications in your target subfield, with arXiv or DOI references.
  5. Prior experience supervising PhD students or postdocs, or equivalent leadership in industry research settings.
  6. Proficiency with LaTeX, SymPy, Python, and Jupyter (please indicate any gaps in experience with these tools).
  7. Exceptional written communication skills, with the ability to articulate nuanced and well-reasoned judgments.