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Quantum Edge Technology Jobs in California (NOW HIRING)

Quantum Systems Engineer

San Diego, CA · On-site

$165K - $200K/yr

You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and ... Collaborate daily with AMO physicists and quantum engineers - participate in experimental planning ...

Quantum Systems Engineer

San Diego, CA · On-site

$165K - $200K/yr

You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and ... Collaborate daily with AMO physicists and quantum engineers -- participate in experimental planning ...

Quantum Systems Engineer

San Diego, CA · On-site

$165K - $200K/yr

You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and ... Collaborate daily with AMO physicists and quantum engineers - participate in experimental planning ...

Quantum Systems Engineer

San Diego, CA · On-site

$165 - $200/hr

You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and ... Collaborate daily with AMO physicists and quantum engineers -- participate in experimental planning ...

Quantum Engineer

Berkeley, CA · On-site

$155K - $200K/yr

As a Quantum Engineer at Rigetti Computing, you will be a key contributor to the development of our ... technologies that work at large QPU scales. * Staying current with cutting-edge research ...

Quantum architecture internships offer a chance to work in cutting edge research to move quantum computing from a theoretical concept to a real-world technology. As an intern you will work with our ...

Quantum architecture internships offer a chance to work in cutting edge research to move quantum computing from a theoretical concept to a real-world technology. As an intern you will work with our ...

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Showing results 1-20

Quantum Edge Technology information

What is quantum edge technology?

Quantum Edge Technology refers to the integration of quantum computing principles and hardware with edge computing systems. This field aims to bring the power of quantum processing closer to where data is generated, such as IoT devices, sensors, or network edges, rather than relying solely on centralized quantum data centers. The goal is to enable faster data analysis, enhanced security, and more efficient processing for applications that require real-time decision-making. Quantum Edge Technology is still in its early stages, but it holds promise for revolutionizing industries like telecommunications, healthcare, and finance.

What are some typical challenges faced by professionals working in quantum edge technology, and how can they be addressed?

Professionals in Quantum Edge Technology often encounter challenges related to integrating quantum computing with edge devices, such as managing limited power, ensuring data security, and developing algorithms that function efficiently in real-time. Collaboration with multidisciplinary teams—spanning hardware engineering, software development, and quantum research—can help address these challenges. Staying current with rapid advancements in both quantum and edge computing fields is essential, and participating in industry conferences or specialized training can enhance problem-solving skills.

What are the key skills and qualifications needed to thrive as a quantum edge technology specialist, and why are they important?

To thrive as a Quantum Edge Technology Specialist, you need a strong background in quantum physics, computer science, and distributed systems, often supported by advanced degrees in these fields. Familiarity with quantum programming languages (like Q# or Qiskit), cloud-based quantum platforms, and edge computing frameworks is typically required. Creative problem-solving, adaptability, and strong collaboration skills are essential for navigating this rapidly evolving and multidisciplinary field. These capabilities are crucial for advancing next-generation computing solutions that bridge quantum technologies with real-world edge applications.

What is the difference between Quantum Edge Technology vs Quantum Computing Engineer?

AspectQuantum Edge TechnologyQuantum Computing Engineer
Required CredentialsBachelor's or Master's in Physics, Computer Science, or related fieldsBachelor's or Master's in Electrical Engineering, Computer Science, or Physics
Work EnvironmentResearch labs, tech companies, startupsResearch and development, software/hardware engineering teams
Industry UsageApplied quantum tech, hardware development, product integrationSoftware development, algorithm design, hardware testing

Quantum Edge Technology focuses on developing and applying quantum hardware and integrated systems, often involving product deployment. Quantum Computing Engineers primarily design and optimize quantum algorithms and hardware components. While both roles require a background in quantum physics or engineering, their daily tasks and industry applications differ, with Quantum Edge Technology emphasizing practical implementation and Quantum Computing Engineers focusing on software and hardware development.

What are popular job titles related to Quantum Edge Technology jobs in California?

For Quantum Edge Technology jobs in California, the most frequently searched job titles are:

What cities in California are hiring for Quantum Edge Technology jobs?

Cities in California with the most Quantum Edge Technology job openings:

Quantum Systems Engineer

Monarch Quantum

San Diego, CA • On-site

$165K - $200K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 11 days ago


Job description

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-starter who thrives in a fluid startup environment. You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and develop and implement engineering practices that support our mission and growth.
The successful candidate will take end-to-end ownership of complex optical systems while working closely with a multidisciplinary team of engineers designing light engines for neutral atom, trapped ion, and quantum sensing applications. The background in AMO laboratory laser systems is beneficial.
Your key responsibilities are as follows:
  • Design, assemble, align, and characterize free-space and fiber-coupled laser systems across UV, visible, and NIR wavelengths in support of AMO experiments.
  • Develop laser frequency stabilization and locking schemes - PDH, modulation transfer, saturated absorption, offset locking - and tune servo systems for robust, long-term operation.
  • Architect optical subsystems for beam conditioning, delivery, switching, and control including AOMs, EOMs, isolators, and polarization management.
  • Architect opto-electronic subsystems for frequency up-conversion using various techniques, from single-pass to resonant-cavity with high-speed servo control loops.
  • Translate experimental requirements from physics teams into optical system specifications and engineering designs.
  • Produce and maintain clear engineering documentation: optical layouts, alignment and checkout procedures, component specifications, and characterization reports.
  • Specify and procure optical components; evaluate vendors and qualify new hardware against performance requirements.
  • Collaborate daily with AMO physicists and quantum engineers - participate in experimental planning and feed optical system constraints upstream into research decisions.
  • Support laser safety compliance in accordance with IEC 60825-1 and institutional requirements.

Requirements
Please note: This position requires access to export-controlled information. Employment is contingent upon the applicant being a U.S. person as defined by 8 U.S.C. § 1324b(a)(3).
Experience and Skills:
    • Ph.D. in Physics, Optical Engineering, or a closely related field, with hands-on thesis or postdoctoral work involving AMO laser systems.
    • 2+ years of direct experience building and maintaining laser systems in an AMO laboratory context - atom trapping and cooling, trapped ions, optical clocks, or quantum sensing.
    • Strong proficiency in free-space optical alignment, beam diagnostics, and interferometric techniques.
    • Experience implementing laser frequency stabilization and understanding of the underlying servo and feedback control theory.
    • Familiarity with fiber optics, including coupling, delivery, and power handling.
    • Ability to produce clean, complete engineering documentation alongside laboratory work.
    • Laser safety awareness; comfort working within a formal laser safety program.

Startup Mindset:
  • You're creative, flexible, and eager to wear multiple hats.
  • You're passionate about building systems from the ground up and comfortable with ambiguity and change.

This is a laboratory-dominant role. The Quantum Systems Engineer will spend bulk of their time on the bench executing hardware bring-up, alignment, and characterization. Complementary system engineering, design, and analysis responsibilities - including optical layout design, component specification and procurement, and performance analysis - are an integral part of the role and directly inform laboratory work. The position carries full technical ownership of assigned systems and close collaboration with the research teams that depend on them.
Benefits
The expected annual salary range for this position is $165,000-$200,000.
As a full-time employee, you will be eligible for Monarch's comprehensive benefits package, which includes:
  • Medical, Dental, and Vision insurance
  • Fidelity 401(k) plan with 4% employer matching
  • 20 paid time off (PTO) days per year
  • 13 paid company holidays
  • 9/80 work schedule (every other Friday off)

Monarch is proud to be an equal opportunity employer and does not discriminate on the basis of race, color, citizenship status, national origin, ancestry, sex, sexual orientation, age, religion, creed, physical or mental disability, medical condition, marital status, veteran status or any other characteristics protected under applicable federal, state and local laws.