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Qubit Jobs in California (NOW HIRING)

Operate analytical lab equipment (pH/conductivity meters, Qubit, NanoDrop, BioAnalyzer, GPC/SEC) * Maintain detailed lab records and collaborate across teams Requirements: * BS/MS in Organic ...

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Qubit information

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How much do qubit jobs pay per hour?

As of Aug 28, 2026, the average hourly pay for qubit in California is $25.79, according to ZipRecruiter salary data. Most workers in this role earn between $14.83 and $30.13 per hour, depending on experience, location, and employer.

What is a qubit?

Qubits, or quantum bits, are the fundamental units of information in quantum computing. Unlike classical bits that represent either a 0 or 1, qubits can exist in a superposition of both states simultaneously, allowing quantum computers to process complex calculations at exponentially higher speeds. Qubits can be realized using various physical systems, such as trapped ions, superconducting circuits, or photons. Their unique properties, including entanglement and superposition, enable powerful computational capabilities that have the potential to revolutionize fields like cryptography, optimization, and material science.

What are the key skills and qualifications needed to thrive as a quantum computing researcher, and why are they important?

To thrive as a Quantum Computing Researcher, you need a strong background in quantum mechanics, computer science, mathematics, and typically a graduate degree in a related field. Familiarity with quantum programming languages (like Qiskit or Cirq), quantum simulation tools, and experience with quantum hardware or cloud-based quantum platforms is essential. Critical thinking, creativity, and effective collaboration are crucial soft skills for success in this position. These skills are vital for advancing research, solving complex problems, and driving innovation in the rapidly evolving quantum computing field.

What are some common challenges faced by qubit engineers, and how can new hires effectively overcome them?

Qubit engineers often encounter challenges related to maintaining quantum coherence, minimizing error rates, and integrating quantum systems with classical computing infrastructure. New hires can overcome these hurdles by staying updated with the latest research, collaborating closely with multidisciplinary teams, and actively participating in code and experiment reviews. Engaging in knowledge-sharing sessions and leveraging mentorship opportunities within the team will also help accelerate learning and adaptation to the rapidly evolving field of quantum computing.

What is the difference between Qubit vs Data Scientist?

AspectQubitData Scientist
Required CredentialsDegree in physics, computer science, or related fields; experience with quantum computingDegree in statistics, computer science, or related fields; strong programming skills
Work EnvironmentResearch labs, tech companies focusing on quantum computingCorporate, research institutions, or tech companies analyzing data
Industry UsageQuantum computing industry, R&D sectorsFinance, healthcare, marketing, tech industries
Common Search/ComparisonYesYes

Qubit specialists focus on developing and working with quantum bits in quantum computing, requiring knowledge of physics and quantum mechanics. Data scientists analyze large datasets using statistical and programming skills. While both roles involve advanced technical skills, Qubit roles are more research-oriented in quantum tech, whereas Data Scientists work across various industries analyzing data for insights.

Infographic showing various Qubit job openings in California as of August 2026, with employment types broken down into 1% Internship, 98% Full Time, and 1% Part Time. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $53,653 per year, or $25.8 per hour.

Senior Quantum Engineer, Gate Calibration

Berkeley, CA • On-site

$175 - $200/hr

Other

Medical, Dental, Vision, Retirement

Posted 9 days ago


Job description

We are looking for an experienced Quantum Engineer to drive the two-qubit gate performance of our tunable-coupler superconducting quantum processors.

Two-qubit gate fidelity is one of the most consequential challenges in quantum computing, and it sits at the center of our roadmap toward error correction. In this role, you will design, execute, and interpret the experiments that propel our near- and long-term gate performance at scale. You will identify the dominant sources of two-qubit gate error on our processors, isolate their physical origin, and eliminate them — through pulse engineering, calibration methodology, error suppression strategies, or feedback to design and fabrication. Your conclusions will directly inform device design, control strategy, and platform-level decisions.

This is a role with substantial autonomy and ownership. You will directly influence the technical direction for gate performance work through the rigorous design and execution of your test plans, measurement and improvement of relevant metrics and error budgeting, and shaping of research priorities. You will do this in a deeply collaborative environment spanning device design, fabrication, control systems, software, theory and R&D, turning proofs of concept into robust procedures that hold up across hundreds of qubit pairs.

Key Responsibilities
  • Lead experimental programs to characterize, calibrate, and optimize two-qubit gates on tunable-coupler devices, from single-pair physics investigations to full-processor deployment.
  • Identify gate-error bottlenecks (e.g., coherent control error, decoherence, leakage, crosstalk, TLS interactions) for single-pair as well as large-scale systems and isolate their physical origin through targeted experiments, benchmarking, and simulation.
  • Develop and harden calibration methods using techniques such as optimal pulse shaping, dynamical decoupling, and other error suppression strategies, with an emphasis on robustness and automation at scale.
  • Develop and improve metrology for full-processor Hamiltonian and characteristic extraction and correlate with gate performance. Turn that knowledge into actionable feedback for device design, fabrication, and control hardware teams, and drive those changes to closure.
  • Prepare novel Rigetti devices for use by internal applications development teams and external deployment.
  • Stay current with the literature and convert state-of-the-art techniques into working capability on production hardware.
  • Contribute to the field of superconducting quantum computing by converting relevant findings into high-quality publications.
Required Qualifications
  • PhD in Physics, Applied Physics, Electrical Engineering, or a related field.
  • Significant hands-on experience calibrating and characterizing two-qubit gates on superconducting quantum devices; direct experience with tunable couplers is a strong plus.
  • Deep understanding of gate design, pulse engineering, and decoherence mechanisms, with a track record of connecting error diagnostics to concrete fidelity improvements.
  • Demonstrated ability to independently execute complex experimental efforts from concept to validated result.
  • Strong Python skills in a scientific context, and comfort building tools that others rely on.
  • Dogged experimental determination, with the judgment to balance depth of investigation against speed of iteration.
  • Excellent communication skills and a team-first mindset in a strongly collaborative environment.
Nice to Have
  • Experience with quantum simulation frameworks such as QuTiP for gate and noise modeling.
  • Experience deploying calibration or benchmarking procedures across large multi-qubit processors in an industrial or startup setting.
  • Familiarity with randomized benchmarking variants, gate set tomography, cycle benchmarking, or other scalable error diagnostics.
  • Publication record or demonstrated results in high-fidelity entangling gates, error suppression, or quantum control.
  • Experience mentoring junior scientists or leading small technical teams.
$175,000 - $200,000 a year
Base Salary
Rigetti complies with all local and state regulations in regards to displaying salary ranges. Final compensation for this role will be determined by various factors such as a candidate’s relevant work experience, skills, and geographic location. Rigetti offers a full slate of benefits from competitive salaries, equity, medical, dental and vision for employees as well as a 401(k) plan, a paid parental leave program, rejuvenation days, and avacation policy that aligns with local regulations and industry standards.

As engineering leaders, we value diversity and are committed to building a culture of inclusion to attract and engage innovative thinkers. Our technology, meant to serve all of humanity, cannot succeed if those who built it do not mirror the diversity of the communities we serve. Applications from women, minorities, and other under-represented groups are encouraged.

About Rigetti

Rigetti Computing is a pioneer in full-stack quantum computing. The company has operated quantum computers over the cloud since 2017 and serves global enterprise, government, and research clients through its Rigetti Quantum Cloud Services platform. The company’s proprietary quantum-classical infrastructure provides ultra-low latency integration with public and private clouds for high-performance practical quantum computing. Rigetti has developed the industry’s first multi-chip quantum processor for scalable quantum computing systems. The company designs and manufactures its chips in-house at Fab-1, the industry’s first dedicated and integrated quantum device manufacturing facility. Rigetti was founded in 2013 and today employs more than 150 people with offices in the United States, U.K., and Australia. Learn more at

www.rigetti.com

Export Licensing Compliance

Rigetti is committed to full compliance with applicable anti-discrimination laws. We are an equal opportunity employer and value diversity at our company. We strive to create an inclusive work environment and will not discriminate on the basis of race, religion, color, national origin, gender, sexual orientation, age, marital status, veteran status, or disability status.

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