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Superconducting Jobs in California (NOW HIRING)

The ideal candidate will have experience in open quantum system dynamics, quantum information, and quantum emulation with superconducting circuits. In this role, you will be responsible for leading ...

The ideal candidate will have experience in open quantum system dynamics, quantum information, and quantum emulation with superconducting circuits. In this role, you will be responsible for leading ...

The ideal candidate will have experience in open quantum system dynamics, quantum information, and quantum emulation with superconducting circuits. In this role, you will be responsible for leading ...

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Superconducting information

What are the key skills and qualifications needed to thrive as a Superconducting Engineer, and why are they important?

To thrive as a Superconducting Engineer, you need a solid background in physics, materials science, and electrical engineering, often supported by an advanced degree in a related field. Familiarity with cryogenic systems, electromagnetic simulation software, and laboratory instrumentation is typical, along with relevant certifications or research experience. Strong analytical thinking, attention to detail, and effective teamwork skills help you excel in collaborative research and problem-solving environments. These competencies are vital for advancing superconducting technologies and ensuring precise, innovative solutions in research or industrial applications.

What are superconducting jobs?

Superconducting jobs typically refer to roles that work with materials or systems exhibiting superconductivity, which is the property of zero electrical resistance at very low temperatures. These jobs can be found in research, engineering, and manufacturing sectors, focusing on developing superconducting materials, designing superconducting magnets, or building applications like MRI machines and quantum computers. Professionals in this field may have backgrounds in physics, materials science, or electrical engineering. Their work often involves experimental research, product development, and collaboration with multidisciplinary teams to advance superconducting technologies.

What are the typical team dynamics and collaboration opportunities for professionals working in superconducting research or engineering roles?

Professionals in superconducting roles often work within multidisciplinary teams that include physicists, materials scientists, engineers, and technicians. Collaboration is key, as projects typically involve integrating theoretical research with practical applications, such as developing advanced magnets or quantum devices. Regular meetings, joint problem-solving sessions, and cross-functional project planning are common, fostering a highly collaborative and innovative environment. Team members are encouraged to share findings, troubleshoot experimental issues together, and contribute to publications or patents, making communication and teamwork essential for success.

What is the difference between Superconducting vs Electrical Engineer?

AspectSuperconductingElectrical Engineer
Required CredentialsBachelor's or higher in physics, materials science, or related fields; specialized knowledge in superconductivityBachelor's or higher in electrical engineering; professional engineering license often preferred
Work EnvironmentResearch labs, advanced materials facilities, academia, specialized industriesManufacturing plants, power systems, electronics design, corporate offices
Industry UsageResearch institutions, quantum computing, energy transmission, scientific researchPower generation, electronics, telecommunications, automation

Superconducting professionals focus on materials and systems that exhibit zero electrical resistance at low temperatures, often working in research or specialized industries. Electrical engineers have a broader scope, designing and maintaining electrical systems across various sectors. While both roles require a strong technical background, superconducting roles are more specialized and research-oriented, whereas electrical engineering is more application-driven and industry-wide.

What cities in California are hiring for Superconducting jobs? Cities in California with the most Superconducting job openings:
Infographic showing various Superconducting job openings in California as of July 2026, with employment types broken down into 93% Full Time, 3% Part Time, 3% Contract, and 1% Nights. Highlights an 94% Physical, 4% Hybrid, and 2% Remote job distribution.
Senior Quantum EDA R&D Engineer - Superconducting Hardware Design

Senior Quantum EDA R&D Engineer - Superconducting Hardware Design

Keysight Technologies, Inc.

Calabasas, CA

$116K - $155K/yr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted yesterday


Keysight Technologies rating

8.1

Company rating: 8.1 out of 10

Based on 20 frontline employees who took The Breakroom Quiz

49th of 156 rated electronics manufacturers


Job description

Overview

Keysight is at the forefront of technology innovation, delivering breakthroughs and trusted insights in electronic design, simulation, prototyping, test, manufacturing, and optimization. Our ~15,000 employees create world-class solutions in communications, 5G, automotive, energy, quantum, aerospace, defense, and semiconductor markets for customers in over 100 countries. Learn more about what we do.

Our award-winning culture embraces a bold vision of where technology can take us and a passion for tackling challenging problems with industry-first solutions. We believe that when people feel a sense of belonging, they can be more creative, innovative, and thrive at all points in their careers.


Responsibilities

Required Locations: One of: Everett, WA. Santa Clara, CA. Calabasas, CA. Cambridge, MA.  Not open to remote.

Position Overview

We are seeking a Senior Quantum EDA R&D Engineer to develop product features, design capabilities, and validated workflows for superconducting quantum hardware.

This role sits at the intersection of superconducting quantum hardware, microwave/RF engineering, EM simulation, and EDA product development. The ideal candidate can translate real hardware design problems into validated simulation workflows, application examples, and product capabilities.

You will work with customers, product teams, and R&D colleagues to develop and validate superconducting hardware design methodologies in EDA environments—and translate application needs into product features.

Why Keysight / Why Quantum EDA

Quantum hardware design is moving from one-off physics experiments toward scalable engineering workflows. Keysight is uniquely positioned to help drive that transition by combining deep microwave/RF, electromagnetic simulation, measurement, and EDA expertise with emerging quantum design capabilities.

In this role, you will help shape design methodologies that connect EM simulation, circuit modeling, Hamiltonian analysis, measurement correlation, and practical superconducting hardware workflows.

Examples of Keysight quantum EDA capabilities include QuantumPro for EM-driven qubit workflows and parameter extraction, ADS Quantum Layout for parameterized quantum artwork and chip buildup, Quantum Circuit Simulation for Josephson-junction-based circuits and quantum amplifiers, and Quantum System Analysis for virtual testbenching of quantum experimental setups. This is an opportunity to work where quantum device physics meets the engineering infrastructure needed to scale real systems.

Why This Is Different from a Typical Quantum Hardware Role

Unlike a role focused on a single quantum hardware program, this role is about developing the EDA capabilities that help many superconducting quantum hardware teams design, simulate, validate, and scale their systems.

You will turn hands-on quantum hardware and microwave/RF design insight into reusable tools, workflows, and product features—connecting device physics, EM/circuit simulation, Hamiltonian analysis, and measurement correlation in practical engineering environments.

Key Responsibilities

  • Develop new features and capabilities for Keysight Quantum EDA solutions by translating superconducting quantum hardware design needs into product requirements, simulation workflows, validation criteria, and working prototypes, in close collaboration with software engineering teams
  • Build and validate models for superconducting quantum hardware components and systems, including:
    • Superconducting qubits, couplers, resonators, readout structures, filters, and amplifiers
    • Cryogenic microwave structures, packaging-aware components, interconnects, and other supporting superconducting or cryogenic hardware elements
  • Develop application workflows and design examples that demonstrate quantum behavior, microwave performance, and system-level tradeoffs
  • Extend quantum design flows in EDA tools by connecting circuit simulation, EM modeling, parameter extraction, Hamiltonian analysis, and system-level behavior into practical simulation workflows
  • Work with customers and internal teams to solve real-world quantum hardware challenges
  • Validate simulation results against theory, measurement data, and published results
  • Create technical documentation, application examples, and validation cases that help users adopt new Quantum EDA capabilities

Qualifications

Required Skills & Experience

  • Strong hands-on experience designing, modeling, simulating, or validating superconducting quantum hardware, including:
    • Superconducting quantum circuits such as qubits, resonators, couplers, readout structures, or amplifiers
    • Understanding of qubit architectures and coupling mechanisms
  • Experience applying microwave/RF design methods to quantum, superconducting, cryogenic, or high-performance EM systems
  • Experience with electromagnetic and circuit simulation tools, such as:
    • ADS, EMPro, HFSS, CST, COMSOL, or similar
  • Solid understanding of:
    • Quantum system behavior (Hamiltonian modeling, energy levels, coupling)
    • EM/circuit interaction in quantum devices
  • Experience building or validating design workflows or examples for quantum, microwave, or EM-driven hardware systems
  • Strong problem-solving ability across quantum + RF/microwave + simulation domains
  • Ability to translate technical needs into simulation workflows, validation tests, and product-ready feature concepts

Software and Automation Skills

  • Experience with Python or similar languages for simulation automation, data analysis, model validation, or workflow prototyping; C++ experience is helpful but not required
  • Familiarity with software workflows in simulation environments, data analysis, or model validation
  • Ability to prototype, automate, and validate workflows that can mature into product features

Preferred Qualifications

  • Familiarity with Keysight quantum EDA tools such as QuantumPro, ADS Quantum Layout, Quantum Circuit Simulation, and Quantum System Analysis
  • Experience with quantum system modeling, control/readout workflows, or experiment-level simulation
  • Experience with HPC or large-scale simulation workflows
  • Familiarity with layout or PDK development for quantum technologies
  • Familiarity with measurement correlation between lab data and simulation
  • Experience translating customer, research, or hardware-design use cases into product requirements, workflows, or application examples

Resume Requirements

Applicants should include concrete examples of superconducting, quantum, microwave, or EM-driven hardware workflows they have directly contributed to.

Resumes or cover letters should clearly describe:

  • the circuits or structures modeled or validated,
  • the tools used,
  • measurement or theory correlation performed,
  • candidate’s direct role in design, automation, analysis, validation, or feature development,
  • specific use of Python and/or C++

Resumes that only list keywords, tools, or coursework without applied usage context will not be competitive for this role.

Education & Background

  • S. or Ph.D. in Electrical Engineering, Physics, Applied Physics, or a related discipline; equivalent industry experience will also be considered
  • Strong preference for candidates with research or industry experience in quantum hardware, superconducting circuits, microwave/RF design, or EDA workflows

What We’re Looking For

We are looking for engineers who want to multiply their impact by using deep quantum hardware, microwave/RF, and simulation expertise to build practical EDA capabilities that help superconducting quantum hardware teams design better systems faster.

#LI-MO1

Careers Privacy Statement***Keysight is an Equal Opportunity Employer.***

Calabasas, CA MIN $119,610.00 - MAX $199,340.00

Note: For other locations, pay ranges will vary by region

US Employees may be eligible for the following benefits:

  • Medical, dental and vision
  • Health Savings Account
  • Health Care and Dependent Care Flexible Spending Accounts
  • Life, Accident, Disability insurance
  • Business Travel Accident and Business Travel Health
  • 401(k) Plan
  • Flexible Time Off, Paid Holidays
  • Paid Family Leave
  • Discounts, Perks
  • Tuition Reimbursement
  • Adoption Assistance
  • ESPP (Employee Stock Purchase Plan)
  • Restricted Stock Units
Qualifications:

Required Skills & Experience

  • Strong hands-on experience designing, modeling, simulating, or validating superconducting quantum hardware, including:
    • Superconducting quantum circuits such as qubits, resonators, couplers, readout structures, or amplifiers
    • Understanding of qubit architectures and coupling mechanisms
  • Experience applying microwave/RF design methods to quantum, superconducting, cryogenic, or high-performance EM systems
  • Experience with electromagnetic and circuit simulation tools, such as:
    • ADS, EMPro, HFSS, CST, COMSOL, or similar
  • Solid understanding of:
    • Quantum system behavior (Hamiltonian modeling, energy levels, coupling)
    • EM/circuit interaction in quantum devices
  • Experience building or validating design workflows or examples for quantum, microwave, or EM-driven hardware systems
  • Strong problem-solving ability across quantum + RF/microwave + simulation domains
  • Ability to translate technical needs into simulation workflows, validation tests, and product-ready feature concepts

Software and Automation Skills

  • Experience with Python or similar languages for simulation automation, data analysis, model validation, or workflow prototyping; C++ experience is helpful but not required
  • Familiarity with software workflows in simulation environments, data analysis, or model validation
  • Ability to prototype, automate, and validate workflows that can mature into product features

Preferred Qualifications

  • Familiarity with Keysight quantum EDA tools such as QuantumPro, ADS Quantum Layout, Quantum Circuit Simulation, and Quantum System Analysis
  • Experience with quantum system modeling, control/readout workflows, or experiment-level simulation
  • Experience with HPC or large-scale simulation workflows
  • Familiarity with layout or PDK development for quantum technologies
  • Familiarity with measurement correlation between lab data and simulation
  • Experience translating customer, research, or hardware-design use cases into product requirements, workflows, or application examples

Resume Requirements

Applicants should include concrete examples of superconducting, quantum, microwave, or EM-driven hardware workflows they have directly contributed to.

Resumes or cover letters should clearly describe:

  • the circuits or structures modeled or validated,
  • the tools used,
  • measurement or theory correlation performed,
  • candidate’s direct role in design, automation, analysis, validation, or feature development,
  • specific use of Python and/or C++

Resumes that only list keywords, tools, or coursework without applied usage context will not be competitive for this role.

Education & Background

  • S. or Ph.D. in Electrical Engineering, Physics, Applied Physics, or a related discipline; equivalent industry experience will also be considered
  • Strong preference for candidates with research or industry experience in quantum hardware, superconducting circuits, microwave/RF design, or EDA workflows

What We’re Looking For

We are looking for engineers who want to multiply their impact by using deep quantum hardware, microwave/RF, and simulation expertise to build practical EDA capabilities that help superconducting quantum hardware teams design better systems faster.

#LI-MO1

Careers Privacy Statement***Keysight is an Equal Opportunity Employer.***

Calabasas, CA MIN $119,610.00 - MAX $199,340.00

Note: For other locations, pay ranges will vary by region

US Employees may be eligible for the following benefits:

  • Medical, dental and vision
  • Health Savings Account
  • Health Care and Dependent Care Flexible Spending Accounts
  • Life, Accident, Disability insurance
  • Business Travel Accident and Business Travel Health
  • 401(k) Plan
  • Flexible Time Off, Paid Holidays
  • Paid Family Leave
  • Discounts, Perks
  • Tuition Reimbursement
  • Adoption Assistance
  • ESPP (Employee Stock Purchase Plan)
  • Restricted Stock Units
Educ...

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