We are seeking a Lead Technical Program Manager in our Broomfield, CO or Brooklyn Park, MN Location.
Quantinuum believes that employees work better, more efficiently and more collaboratively in close proximity to other employees, where ideas can be exchanged readily, and decisions can be made more quickly for the benefit of the Company and our customers. All employees should work at their assigned location; however, this role may offer the opportunity to work remotely up to 2 days per week, with approvals.
All applicants for placement in safety-sensitive positions will be required to submit to a pre-employment drug test.
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Key Responsibilities:
- Lead development of and manage detailed schedules, budgets, resource needs, and work plans for technical deliverables on complex, multi-faceted hardware R&D programs
- Organize and coordinate with multiple technical and operational teams
- Lead regular status meetings, project reviews, and end-of-task retrospectives
- Ensure timely and effective communication of strategy, scope changes, risks, and progress between technical teams, partners, product and program management, and leadership through reports, dashboards, and presentations
- Identify opportunities to accelerate schedule or develop needed technologies
- Ability to travel up to 25%
YOU MUST HAVE:
- Bachelor’s degree minimum
- Minimum 8+ years’ experience in technical program management
- Direct experience supporting or executing federal programs which includes strict adherence to reporting metrics, audits, and compliance requirements
- Due to Contractual requirements, must be a U.S. Person defined as, U.S. citizen permanent resident or green card holder, workers granted asylum or refugee status
- Due to national security requirements imposed by the U.S. Government, candidates for this position must not be a People's Republic of China national or Russian national unless the candidate is also a U.S. citizen.
WE VALUE:
- Master’s degree in a STEM field
- Proven track record of guiding complex technology from R&D and prototyping
- A background in quantum computing, optics and photonics, or experimental physics
- Project Management Professional (PMP) certification
- Experience in product development
- Prior experience in Quantum industry
- Experience seeing technology-based projects through the full life cycle including managing schedule, risk, and budget
- Prior experience on first-of-its-kind, early technology-based products or projects
- Resourcefulness and the ability to predict challenges to proactively head-off obstacles
- Excellent time management and organizational skills and experience establishing guidelines in these areas for others
- Experience working in a high-level collaborative environment and promoting a teamwork mentality
- Ability to adapt tactics and strategies to meet diverse, early phase, and strongly technical projects
- Thorough understanding of risk and opportunity analysis and management processes related to program planning
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$164,000 - $205,000 a year
Compensation & Benefits:
Incentive Eligible – Range posted is inclusive of bonus target.
The pay range for this role is $164,000 – $205,000 annually. Actual compensation within this range may vary based on the candidate’s skills, educational background, professional experience, and unique qualifications for the role.
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Quantinuum is the world leader in quantum computing. The company’s quantum systems deliver the highest performance across all industry benchmarks. Quantinuum’s over 650 employees, including 400+ scientists and engineers, across the US, UK, Germany, and Japan, are driving the quantum computing revolution.
By uniting best-in-class software with high-fidelity hardware, our integrated full-stack approach is accelerating the path to practical quantum computing and scaling its impact across multiple industries.
By joining Quantinuum, you’ll be at the forefront of this transformative revolution, shaping the future of quantum computing, pushing the limits of technology, and making the impossible possible.
What’s in it for you?
A competitive salary and innovative, game-changing work
Flexible work schedule
Employer subsidized health, dental, and vision insurance
401(k) match for student loan repayment benefit
Equity, 401k retirement savings plan + 12 Paid holidays and generous vacation + sick time
Paid parental leave
Employee discounts
Quantinuum is an equal opportunity employer. You will be considered without regard to age, race, creed, color, national origin, ancestry, marital status, affectional or sexual orientation, gender identity or expression, disability, nationality, sex, or veteran status. Know Your Rights: Workplace discrimination is illegal
Applications will be accepted on an ongoing basis, there is no application deadline for this position.
TECHNICAL & MARKET ANALYSIS | Appended by Quantum.Jobs
The emergence of Lead Technical Program Managers specializing in deep-tech hardware initiatives represents a critical pivot in the quantum computing sector from laboratory-scale prototyping to industrial-grade scalability. As the quantum ecosystem matures, the structural necessity for roles that orchestrate multi-faceted research and development portfolios becomes paramount to resolving the translation gap between experimental physics and commercial utility. This role type serves as a high-leverage stabilization point within the physical execution layer, ensuring that emerging hardware architectures achieve the rigorous performance and reliability benchmarks demanded by enterprise deployment. Market signals from global technology consortiums highlight that structured program leadership is essential for mitigating the systemic risks of resource fragmentation and schedule slippage in high-capital development environments. By converting complex scientific milestones into deterministic execution roadmaps, this function secures the foundation for long-term commercial readiness and competitive differentiation in the deep-tech value chain.
The hardware layer of the quantum information science value chain is undergoing a decisive shift from isolated proof-of-concepts to the integration of complex, multi-faceted engineering sub-systems. While quantum supremacy has been demonstrated in specific regimes, the primary bottleneck for industrial adoption has shifted to physical scalability, error mitigation, and structural reproducibility. The current sector-wide focus lies on bridging classical and quantum capabilities at scale, necessitating a sophisticated management of cross-functional teams spanning experimental physics, cryogenic systems, optics, and advanced software compilation to ensure that hardware baselines can support fault-tolerant execution.
Workforce scarcity is particularly acute at the intersection of domain-specific physical sciences and advanced systems engineering frameworks. As deep-tech organizations scale past NISQ-era benchmarks, the ecosystem requires specialized orchestrators who can navigate the fragmentation of specialized supply chains and the strict mandates of sovereign technology programs. Current industry dynamics, heavily influenced by public-private funding cycles and national security compliance frameworks, place a premium on roles that can drive predictable execution milestones across highly experimental engineering domains. This structural layer of management is the primary mechanism for maintaining momentum as deep-tech hardware transitions through rising Technology Readiness Levels (TRLs).
Integration with external high-performance computing systems and compliance with complex institutional frameworks remain high-risk dependencies for the sector. The evolution of the global quantum value chain depends on the ability to translate material breakthroughs into production-ready platforms without disrupting established research timelines or capital allocation plans. Consequently, the availability of technical program leaders capable of stabilizing these complex dependencies is a primary determinant of whether a commercial hardware organization can successfully transition from capital-intensive exploration to stable commercial deployment.
The capability architecture for this role type centers on the synchronization of advanced quantum hardware research with the protocols of enterprise-grade systems engineering. Mastery of the interface between experimental physics, photonics, and product development lifecycles is essential for ensuring that deep-tech initiatives are optimized for the specific constraints of early-stage technology development. This requires a deep understanding of the integration points between specialized research outputs and the rigorous reporting metrics, audit protocols, and compliance frameworks mandated by state-sponsored and institutional contracts.
These capabilities are fundamental to the operational throughput of deep-tech organizations, as they enable the parallelization of scientific discovery alongside the development of reproducible manufacturing pipelines. By establishing rigorous verification, risk analysis, and validation frameworks, this function provides the leverage needed to assess execution probability before full-scale capital allocation. Furthermore, the ability to manage complex stakeholder landscapes ensures that scientific milestones are reconciled with the practical constraints of regulatory compliance and resource limitations. Such expertise reduces the iteration friction between abstract discovery and stable system delivery, which is critical for long-term integration within the global computing infrastructure. - Accelerates the deterministic transition from early-stage hardware prototyping to industrial-grade quantum computing systems
- Mitigates systemic execution risks by synchronizing highly experimental physics research with predictable commercial milestones
- Facilitates the alignment of deep-tech development pathways with strict institutional compliance and reporting frameworks
- Strengthens the reliability of organizational technology strategies through the implementation of rigorous risk and opportunity analysis
- Reduces iteration friction between fundamental quantum research achievements and the deployment of production-ready systems
- Optimizes the allocation of specialized technical talent across diverse engineering, physics, and operational portfolios
- Enhances the stability of the quantum hardware value chain by providing structured requirement frameworks for external partners
- Supports the scaling of physical infrastructure by managing the complex dependencies of cross-functional development teams
- Improves the transparency of technology readiness level progression for stakeholders in the investment and public sectors
- Enables the structural predictability of complex R\&D cycles through the standardization of milestone tracking protocols
- Protects high-capital hardware investments by ensuring strict adherence to budgetary, resource, and schedule constraints
- Orchestrates the convergence of academic engineering methodologies with the practical demands of enterprise-scale technology programsIndustry Tags: Quantum Hardware, Technical Program Management, Deep Tech Infrastructure, Systems Engineering, Risk Mitigation, Technology Readiness Levels, Federal Compliance, Cross-Functional Coordination
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