1

Phd Quantum Computing Jobs in Ontario (NOW HIRING)

Senior Quantum Engineer

Ottawa, ON · On-site

$120K - $160K/yr

Q-Block Computing builds quantum systems that operate in the real world. The company develops ... PhD degree in Engineering Physics, Electrical Engineering, Photonics, Mechanical Engineering, or a ...

Senior Quantum Engineer

Ottawa, ON · On-site

CA$120K - CA$160K/yr

Q-Block Computing builds quantum systems that operate in the real world. The company develops ... PhD degree in Engineering Physics, Electrical Engineering, Photonics, Mechanical Engineering, or a ...

Phd Quantum Computing information

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

To thrive as a PhD in Quantum Computing, you need deep knowledge of quantum mechanics, advanced mathematics, and computer science, along with a doctoral degree in a relevant field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware platforms, and experience with simulation tools are typically expected. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate across interdisciplinary teams and share complex concepts. These skills are vital for advancing research, developing novel algorithms, and contributing to the rapidly evolving field of quantum technologies.

What can you do with a PhD in quantum computing?

A PhD in quantum computing prepares individuals for research and development roles in academia, industry, or government labs, focusing on quantum algorithms, hardware, and software development. Graduates often work as quantum researchers, software engineers, or data scientists, utilizing skills in programming languages like Python and tools such as quantum simulators and hardware platforms. These roles typically require strong analytical skills and knowledge of quantum mechanics and computer science.

What are some common interdisciplinary collaborations for a PhD in quantum computing?

PhD candidates in Quantum Computing frequently collaborate with experts from physics, electrical engineering, mathematics, and computer science. These collaborations often involve joint research projects, co-authored publications, and participation in interdisciplinary seminars or lab meetings. Such teamwork not only enriches research perspectives but also helps candidates develop a well-rounded skill set, which is highly valued in both academic and industry settings. Engaging with colleagues from diverse backgrounds can also lead to innovative approaches to solving complex quantum problems.

What is a PhD quantum computing professional?

PhD quantum computing professionals are experts who have completed a doctoral degree focused on the theory, development, and application of quantum computing technologies. They conduct advanced research in areas like quantum algorithms, quantum hardware, and quantum information theory. These professionals often work in academia, research institutions, or industry roles to push the boundaries of what quantum computers can achieve, solving problems that are intractable for classical computers. Their work involves both theoretical research and practical implementation, often collaborating with interdisciplinary teams.

What is the difference between Phd Quantum Computing vs Quantum Software Engineer?

AspectPhd Quantum ComputingQuantum Software Engineer
Required CredentialsPhD in Physics, Computer Science, or related fieldBachelor's or Master's in Computer Science, Physics, or related field; some roles prefer PhD
Work EnvironmentResearch labs, academia, industry R&DTech companies, startups, industry R&D teams
Industry UsageResearch, development, academiaProduct development, software engineering, application deployment
Common Search/ComparisonYesYes

While both roles involve quantum technologies, a Phd Quantum Computing focuses on research, theory, and developing new quantum algorithms, often in academic or industrial R&D settings. In contrast, a Quantum Software Engineer applies quantum programming skills to develop practical applications and software solutions in industry. The roles overlap in technical knowledge but differ in focus and work environment.

What are popular job titles related to Phd Quantum Computing jobs in Ontario?

For Phd Quantum Computing jobs in Ontario, the most frequently searched job titles are:

What job categories do people searching Phd Quantum Computing jobs in Ontario look for?

The top searched job categories for Phd Quantum Computing jobs in Ontario are:

Infographic showing various Phd Quantum Computing job openings in Ontario as of August 2026, with employment types broken down into 75% Full Time, 22% Part Time, and 3% Contract. Highlights an 81% Physical, 4% Hybrid, and 15% Remote job distribution.

Senior Quantum Engineer

Q-Block Computing

Ottawa, ON • On-site

$120K - $160K/yr

Full-time

Medical, Dental, Vision, Life

Re-posted 10 hours ago


Job description

Location: Ottawa, ON (on-site)

Employment type: Full-time

Salary range: $120,000-$160,000 CAD per year

About Q-Block Computing: Q-Block Computing builds quantum systems that operate in the real world. The company develops quantum timing, quantum-secure communications, and quantum computing platforms engineered for the performance, reliability, and environmental resilience that mission-critical applications demand. These are systems designed to be deployed, maintained, and trusted.

The long-term vision is deeper than any single platform. Q-Block is pursuing a mission to decode Nature's foundational model - to build instruments of sufficient precision and coherence that they become tools for understanding the physical universe at its most fundamental level. Every system engineered to sustain quantum coherence under real-world conditions is also an advance in what becomes scientifically possible next. The commercialization and the science reinforce each other by design.

About this role: The Senior Quantum Engineer will serve as a technical leader in Q-Block's R&D engineering organization, with responsibility for driving the development, integration, and productization of quantum hardware systems from prototype to deployed capability. This role requires deep hardware expertise, sound engineering judgment, and the ability to work across subsystem boundaries - optics, photonics, electronics, control systems, and mechanical design - to bring complex quantum systems to the performance and reliability standards that operational deployment demands.

The Senior Quantum Engineer will own engineering decisions within their domain, mentor junior engineers, and operate as a bridge between experimental capability and deployable system. This is a role for an engineer who thrives on hard problems, holds themselves to an uncompromising standard of technical honesty, and finds satisfaction in building things that actually work in the real world under real conditions.
Responsibilities

  • Lead the engineering design, integration, and qualification of quantum hardware subsystems - optical, photonic, electronic, control, and mechanical - across Q-Block's platform programs, from prototype through field-deployable system.
  • Own subsystem-level performance: define specifications, plan verification and validation campaigns, analyze failure modes, and drive technical closure on engineering issues with clear, documented reasoning.
  • Drive productization and design-for-reliability efforts, including ruggedization, thermal management, environmental qualification, and manufacturing-readiness transitions for quantum system components.
  • Develop and improve fabrication, assembly, alignment, and calibration procedures for precision optical and electronic subsystems, with attention to repeatability, yield, and operator-independent performance.
  • Collaborate with scientists and systems architects to translate performance requirements and physical constraints into engineering design specifications.
  • Lead design reviews, establish engineering standards and documentation practices, and provide technical mentorship to junior engineers on the team.
  • Identify and retire technical risks proactively; lead root-cause analysis for subsystem failures and implement robust corrective actions.
  • Contribute to technical proposals, engineering documentation, and IP capture processes as appropriate.
  • Stay current with developments in quantum hardware, photonics, precision electronics, and related engineering domains.

    Required qualifications

    • PhD degree in Engineering Physics, Electrical Engineering, Photonics, Mechanical Engineering, or a closely related field.
    • 5+ years of professional engineering experience in quantum hardware, scientific instrumentation, photonics, precision electronics, or a related deep-tech hardware domain.
    • Demonstrated ownership of subsystem-level engineering deliverables: specification, design, build, test, and documentation through the full development cycle.
    • Strong hands-on capability in at least one of: optical systems engineering, laser hardware and stabilization, photonic integration, precision analog electronics, or quantum control systems.
    • Experience in a productization or reliability engineering context: transitioning prototype hardware to robust, repeatable, fielded systems.
    • Clear, disciplined technical communication: architecture documents, verification plans, test reports, and engineering specifications written for a demanding technical audience.

      Preferred qualifications

      • Hands-on experience with one or more of: UHV systems, neutral-atom or ion trap hardware, optical frequency metrology, fiber-optic network components, quantum key distribution hardware, or FPGA-based real-time control.
      • Experience with precision timing systems, synchronization architectures, or PNT-related hardware.
      • Track record of system-level integration across optics, electronics, and software in a quantum or precision instrumentation context.
      • Experience working in or alongside defense, national security, or high-assurance systems environments.
      • Familiarity with relevant standards and compliance frameworks for defense or regulated hardware programs.

        Security and Compliance Requirements

        • Must be eligible to obtain and maintain Government of Canada security clearance, if required for assigned projects.
        • Must be eligible to comply with requirements of the Controlled Goods Program, if required for assigned projects.
        • Must be willing to participate in background screening, documentation, and compliance processes associated with security-sensitive work.
        • Ability to work effectively within security, export-control, and compliance-sensitive technical environments is an asset.

        Benefits

        • Extended health care (including dental and vision)
        • Life insurance

        Equal Opportunity

        Q-Block Computing is an equal opportunity employer. We are committed to treating all employees and applicants with respect and dignity. Accommodations are available on request during the application and recruiting process.

        Canadian citizens and permanent residents are strongly encouraged to apply. All interested candidates are encouraged to apply.

        Employment Type: FULL_TIME