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Quantum Technology Jobs in California (NOW HIRING)

Vector Atomic, an IonQ company, is building quantum technology to transform navigation, timing, geophysical exploration, and telecommunications. Our team of engineers, scientists, software developers ...

Vector Atomic, an IonQ company, is building quantum technology to transform navigation, timing, geophysical exploration, and telecommunications. Our team of engineers, scientists, software developers ...

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Vector Atomic, an IonQ company, is building quantum technology to transform navigation, timing, geophysical exploration, and telecommunications. Our team of engineers, scientists, software developers ...

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Quantum Technology information

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$14

$24

$32

How much do quantum technology jobs pay per hour?

As of Aug 14, 2026, the average hourly pay for quantum technology in California is $24.76, according to ZipRecruiter salary data. Most workers in this role earn between $21.59 and $28.22 per hour, depending on experience, location, and employer.

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

To thrive in Quantum Technology, you need a solid background in physics, mathematics, and computer science, often supported by a graduate degree in a related field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware systems, and simulation tools is typically required. Strong problem-solving abilities, analytical thinking, and effective collaboration are crucial soft skills in this rapidly evolving sector. These skills and qualifications are vital for developing, implementing, and advancing cutting-edge quantum solutions in both research and industry.

What are some common challenges faced by professionals working in quantum technology roles?

Professionals in quantum technology often face challenges such as working with rapidly evolving hardware that may lack standardized platforms, as well as the complexity of translating quantum theory into scalable, real-world applications. Collaboration across multidisciplinary teams—including physicists, engineers, and software developers—is essential, which can require strong communication skills to bridge knowledge gaps. Additionally, staying updated on the latest research and technological advancements is crucial, as the field is highly dynamic and competitive.

What is the difference between Quantum Technology vs Quantum Computing?

AspectQuantum TechnologyQuantum Computing
Required CredentialsPhysics, Engineering, or related degrees; certifications in quantum mechanics or related fieldsComputer Science, Physics; certifications in quantum algorithms or programming
Work EnvironmentResearch labs, tech companies, government agenciesResearch centers, tech firms, startups focused on computational solutions
Industry UsageQuantum sensors, communication, cryptographyData processing, problem-solving, complex simulations

Quantum Technology encompasses a broad range of applications including sensors, communication, and cryptography, while Quantum Computing specifically focuses on developing computers that leverage quantum mechanics for processing information. Both fields require similar educational backgrounds but differ in their primary applications and work environments.

What is quantum technology?

Quantum technology jobs involve working with advanced technologies that leverage the principles of quantum mechanics, such as superposition and entanglement. These roles can include research and development in quantum computing, quantum communication, and quantum sensing. Professionals in this field may work as quantum software engineers, quantum physicists, hardware engineers, or researchers, often in academic, corporate, or governmental settings. The field is rapidly evolving and requires a strong background in physics, mathematics, and computer science.

What are the most commonly searched types of Quantum Technology jobs in California?

The most popular types of Quantum Technology jobs in California are:

What cities in California are hiring for Quantum Technology jobs?

Cities in California with the most Quantum Technology job openings:

Infographic showing various Quantum Technology job openings in California as of August 2026, with employment types broken down into 96% Full Time, and 4% Contract. Highlights an 100% In-person job distribution, with an average salary of $51,508 per year, or $24.8 per hour.

Quantum Topological Qubits Research Scientist

Globalfoundries

Santa Clara, CA • On-site

$143K - $275K/yr

Full-time

Re-posted 9 days ago


GlobalFoundries rating

8.3

Company rating: 8.3 out of 10

Based on 35 frontline employees who took The Breakroom Quiz

67th of 539 rated manufacturers


Job description

About GlobalFoundries

GlobalFoundries is a leading full-service semiconductor foundry providing a unique combination of design, development, and fabrication services to some of the world's most inspired technology companies. With a global manufacturing footprint spanning three continents, GlobalFoundries makes possible the technologies and systems that transform industries and give customers the power to shape their markets. For more information, visit www.gf.com.

Introduction

The Quantum Topological Research Scientist - Technology Architecture is a senior technical leadership role within GF Labs responsible for advancing topological quantum computing technologies from fundamental concepts to scalable semiconductor platforms. This role combines deep expertise in materials, device physics, and integration with hands-on technical engagement in experiments, simulations, and early hardware development. The position influences internal roadmaps and external research while working closely with engineering teams and partners to mature topological quantum technologies into manufacturable solutions.

Summary of Role

As a PMTS, this role works closely with foundry customers to define the long-term technology architecture for topological qubit platforms while remaining actively engaged in experimental, modeling, and prototype activities. The position spans quantum materials, device physics, integration, and cryogenic systems, translating emerging concepts into scalable semiconductor solutions. This individual serves as a technical authority internally and externally to shape roadmaps, guide investments, and deliver high-impact quantum technologies.

Essential Responsibilities

  • Define and drive long-term technology roadmaps for topological qubits, including materials, device architectures, and integration strategies
  • Lead development of topological quantum devices, with direct involvement in experiments, simulations, and prototype evaluation
  • Work closely with device, integration, process, AME, PDK, and test teams to translate concepts into scalable semiconductor architectures
  • Guide R&D of advanced materials, including IIIV heterostructures, epitaxy, superconductors, and topological material systems
  • Contribute to experimental design, data analysis, and failure learning cycles for quantum devices
  • Define system architectures linking qubits with cryogenic control and read-out electronics
  • Drive modeling and validation strategies to improve coherence, performance, manufacturability, and scalability
  • Translate device innovations into semiconductor-compatible integration approaches (BEOL, superconducting wiring, heterogeneous integration)
  • Establish technical benchmarks, requirements, and success metrics aligned with internal and partner programs
  • Serve as primary technical interface with customers and research partners to shape joint development efforts
  • Lead and contribute to external collaborations, funded programs, and research proposals
  • Communicate technical strategy, risks, and tradeoffs to leadership and multidisciplinary teams
  • Mentor engineers and establish technical standards across topological quantum R&D

Other Responsibilities:

  • Perform all activities in a safe and responsible manner and support all Environmental, Health, Safety & Security requirements and programs.

Required Qualifications

  • MS or PhD in Physics, Electrical Engineering, Materials Science, or Applied Physics
  • 12+ years of experience in quantum devices, semiconductor technologies, or advanced research
  • Deep expertise in topological, superconducting, and quantum system architectures
  • Experience with cryogenic device physics and measurement environments
  • Demonstrated impact on technical strategy, research direction, and roadmaps.

Preferred Qualifications

  • PhD with publications or patents in topological quantum devices
  • Experience scaling research concepts into manufacturable semiconductor platforms
  • Background in Majorana or topological qubit architectures
  • Experience collaborating with quantum companies, academia, or consortias
  • Experience mentoring and guiding technical organizations

Expected Salary Range

$143,000.00 - $275,000.00

The exact Salary will be determined based on qualifications, experience and location.

If you need a reasonable accommodation for any part of the employment process, please contact us by email at usaccommodations@gf.com and let us know the nature of your request and your contact information. Requests for accommodation will be considered on a case-by-case basis. Please note that only inquiries concerning a request for reasonable accommodation will be responded to from this email address.

An offer with GlobalFoundries is conditioned upon the successful completion of pre-employment conditions, as applicable, and subject to applicable laws and regulations.

GlobalFoundries is fully committed to equal opportunity in the workplace and believes that cultural diversity within the company enhances its business potential. GlobalFoundries goal of excellence in business necessitates the attraction and retention of highly qualified people. Artificial barriers and stereotypic biases detract from this objective and may be illegally discriminatory.

All policies and processes which pertain to employees including recruitment, selection, training, utilization, promotion, compensation, benefits, extracurricular programs, and termination are created and implemented without regard to age, ethnicity, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, sexual orientation, gender identity or expression, veteran status, or any other characteristic or category specified by local, state or federal law


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