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Quantum Edge Technology Jobs in Wisconsin (NOW HIRING)

The company harnesses neutral atom quantum technology to build and integrate quantum computers, sensors, and networks. From fundamental physics to leading edge commercial products, Infleqtion enables ...

The company harnesses neutral atom quantum technology to build and integrate quantum computers, sensors, and networks. From fundamental physics to leading edge commercial products, Infleqtion enables ...

WI · On-site

$180 - $240/hr

QCORE's primary objective is to empower Montana's quantum ecosystem by uniting cutting-edge research, industry partnerships, and community engagement - enabling breakthrough technologies that shape ...

WI · On-site

$61 - $112/hr

We work on hands-on engagements with cutting-edge IBM Z and LinuxONE technology, providing ... At IBM, we pride ourselves on being an early adopter of artificial intelligence, quantum computing ...

... edge compute behind carrier-grade NAT and restrictive third-party networks. * Embedded & OEM ... Respond to RFPs, RFIs, and security questionnaires; translate FIPS, CNSA 2.0, and post-quantum ...

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 Wisconsin?

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

What job categories do people searching Quantum Edge Technology jobs in Wisconsin look for?

The top searched job categories for Quantum Edge Technology jobs in Wisconsin are:

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

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

Staff Quantum Sensor Physicist

Infleqtion

Madison, WI • On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 19 days ago


Job description

Infleqtion is a global quantum technology company solving the world's most challenging problems. The company harnesses neutral atom quantum technology to build and integrate quantum computers, sensors, and networks. From fundamental physics to leading edge commercial products, Infleqtion enables "quantum everywhere" through our ecosystem of devices and platforms. We are recruiting for a Staff Quantum Sensor Physicist to help translate customer needs into practical architectures and devices for deployable atom-based inertial and gravitational sensors.

JOB RESPONSIBILITIES

The duties and responsibilities outlined below include essential functions of the role. Depending on business needs, this role may perform a combination of some or all of the following duties. Duties, responsibilities, and activities may change, or new ones may be assigned at any time with or without notice.

  • Participates in and/or leads research and development projects involving atom interferometry, atom-based inertial and gravitational sensing, cold-atom systems, laser systems, vacuum systems, controls, and quantum sensing systems
  • Translates customer needs, use cases, and specifications into practical quantum sensor architectures, requirements, error budgets, trade studies, operating concepts, and development plans
  • Leads or supports development from concept and architecture phases all the way through test, operation, and eventual deployment
  • Develops and maintains physics models, simulations, calculations, and error budgets to guide architecture decisions, performance estimates, and identification of technical risks
  • Evaluates sensor concepts against real-world and deployed-system constraints including sensitivity, bandwidth, dynamic range, SWaP-C, environmental robustness, manufacturability, reliability, cost, schedule, and technical risk
  • Works with electrical, mechanical, software, firmware, vacuum, laser, and controls engineering teams to develop requirements, guide design trades, and convert physics concepts into buildable and operable instrument designs
  • Participates in proposal development and customer technical discussions, including practical work scope, risks, system concepts, and deployment consideration.
  • Communicates project findings and progress to both internal stakeholders and external customers

Requirements

  • PhD in atomic physics, optical physics, quantum sensing, precision measurement, or related field
  • Practical experience with atom-based inertial and/or gravitational sensors, atom interferometry, or closely related AMO or precision-measurement hardware
  • Strong practical judgment in balancing physics performance against constraints such as reliability, operability, integration complexity, usability, cost, schedule, SWaP-C, environmental robustness, and technical risk
  • Experience designing, building, integrating, testing, operating, and debugging complex hardware and software systems
  • Experience developing models, simulations, calculations, and/or error budgets to inform instrument designs
  • Ability to work effectively with engineering teams on optical, mechanical, electrical, software, firmware, vacuum, laser, controls, packaging, and instrument-operation challenges
  • Professional-level communication skills, including the ability to share technical information clearly with technical and non-technical staff, leadership, and customers
  • Ability to travel domestically and potentially internationally up to 10%
  • Candidates must be authorized to work in the United States without current or future sponsorship
Additional Preferred Qualifications:
  • Direct experience with atom interferometry, cold-atom gravimetry, gravity gradiometry, quantum inertial sensing, Bose Einstein condensates, or optical lattices
  • Experience building, testing, operating, or deploying practical AMO/quantum systems, including fieldable sensors, transportable instruments, or robust laboratory prototypes
  • Experience with cold or ultracold atoms, Bose-Einstein condensates, MOTs, optical lattices, or related technologies
  • Demonstrated ability to translate customer needs or performance goals into implementable system architectures, requirements, engineering trades, and test approaches
  • Experience writing proposals, leading technical work, serving as a Principal Investigator (PI) or technical lead, and/or working directly with customers
  • 5+ years of post-PhD experience in a postdoctoral role, quantum-related industry, precision measurement, or related hardware development environment

NOTE

This position may require access to information protected under U.S. export control laws and regulations for quantum computing technology. Please note that any offer for employment may be conditioned on authorization to receive software or technology controlled under these U.S. export control laws and regulations without sponsorship for an export license.

WORKING CONDITIONS and PHYSICAL REQUIREMENTS

Work will normally be performed in an office and laboratory environment and around technical equipment including computers and lasers.  We ask that candidates be able to efficiently use automated office equipment such as laptops, copiers, and printers; able to effectively engage in communications (via phone, computer, or in-person).  Any required Personal Protective Equipment will be provided and must be properly used in accordance with company requirements.

TRAVEL

Up to 10% travel may be required.

Notice to Recruitment Agencies:

Infleqtion does not accept unsolicited resumes from agencies. Infleqtion is not responsible for any fees related to unsolicited resumes.

Benefits

The targeted salary range for this role is $166,000 to $256,000 on an annualized basis plus eligibility to participate in our annual incentive plan.

In addition to your base compensation, we offer a generous Total Rewards program which includes:

  • 100% company paid Employee coverage for Medical, Dental, Vision, and Short/Long Term Disability insurance programs
  • Employer funded Health Savings Account
  • Unlimited Paid Time Off
  • 401(k) Matching Programs
  • Company paid Life and AD&D Insurance
  • Flexible Healthcare Savings Account
  • Paid FMLA Leave
  • Paid Maternity/Paternity Leave
  • Employer Assistance Program
  • Student Loan Repayment

Equal Opportunity

Here you have freedom to embrace your whole self: who you love, your gender identity and expression, skin color, age, appearance, disability, neurodiversity, DNA, military/veteran status, citizenship, and other factors that make up who you are. Your uniqueness is valued, welcomed, and appreciated here. We are dedicated to providing a positive workplace and base all employment decisions on your qualifications, performance, merits, as well as business needs. We are proud to be an Equal Employment Opportunity Employer.

Contact Information

If this opportunity interests you and you fit the job description, please submit an application. If you need assistance or an accommodation due to disability, please feel free to contact us at hr@coldquanta.com.