Xanadu

Senior Scientist - Quantum Sources

Xanadu$140K — $190K *
Pharmaceuticals & Biotech
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Hands-on experimental optics lab experience with integrated optics, fiber optics, and optical state generation.
  • Direct experience with generating and characterizing non-classical light states in lab settings.
  • Familiarity with active stabilization of optical phases and PID controllers.
  • Ph.D. in Quantum Optics, Photonics, AMO, Applied Physics, or related fields.
  • Over four years of experience in experimental quantum computing, specifically in optical architectures.

Responsibilities

  • Lead the integration and validation of quantum source modules from photonic chips to practical hardware.
  • Characterize advanced quantum states using integrated squeezers and measure key performance metrics.
  • Collaborate across hardware disciplines to troubleshoot and improve system integration.
  • Implement control strategies for optical components and maintain operational stability of networks.
  • Provide feedback on module performance to influence design of future photonic chips.
  • Document integration procedures, specifications, and operational manuals for handoff.

Benefits

  • Equity participation in the company.
  • Comprehensive healthcare benefits.
  • Access to professional development opportunities.
Full Job Description
Your role and responsibilities:

We are seeking a Senior Scientist - Quantum Sources to contribute to the physical implementation and integration of cutting-edge photonic modules for large-scale quantum systems. You will be working with highly complex photonic integrated circuits (PICs) that include networks of active interferometers, squeezers, and on-chip high extinction ratio filters. Your primary focus will be transforming these foundational chips into robust, fully characterized quantum source modules, bridging the gap between component-level design and system-level deployment.
  • Lead the assembly, integration, and experimental validation of quantum source modules, driving the transition of bare photonic chips into deployable hardware for large-scale demonstrators.
  • Characterize and benchmark the generation of advanced quantum states utilizing integrated squeezers and active routing. Measure key figures of merit including squeezing levels, modal purity, optical losses, and filter rejection ratios.
  • Act as the vital technical bridge across hardware disciplines. Collaborate deeply with PIC designers, electrical engineers, mechanical engineers, and systems engineers to define module interfaces, troubleshoot integration bottlenecks, and ensure seamless system operation.
  • Implement and optimize complex control strategies for integrated optical components. Interface directly with custom control electronics to actively stabilize interferometric networks and tune high extinction ratio filters to exacting tolerances.
  • Provide measurement-driven feedback to the PIC design and component testing teams, utilizing insights from module-level performance to drive the architecture of next-generation chips.
  • Generate detailed technical documentation, including integration procedures, module specifications, characterization reports, and operational manuals for system-level handoffs.
Basic qualifications and experience:
  • Optics expertise: Hands-on experimental optics lab experience, with deep knowledge in integrated optics, fiber optics, optical state generation, and multi-path optical interference.
  • Quantum Sources: Direct experience generating, manipulating, and characterizing non-classical light (e.g., squeezed states, multi-photon states, homodyne detection) in an experimental setting.
  • Systems & Electronics: Working familiarity with active stabilization of optical phases, PID controllers, and the control electronics required to drive complex photonic chips.
  • Education: Ph.D. in Quantum Optics, Photonics, AMO, Applied Physics, or a closely related field.
Preferred qualifications and experience:
  • Prior work experience: >4 years in experimental quantum computing (particularly in optical quantum computing), dealing with complex, multi-component photonic architectures.
  • Advanced Integration: A proven track record of bringing together disparate technologies, such as packaging or integrating optical chips into larger systems, including managing fiber-to-chip coupling and electronic-photonic co-packaging constraints.
  • Cross-functional Collaboration: Demonstrated success working in highly collaborative engineering environments, effectively speaking the language of mechanical, electrical, and systems teams to solve multi-disciplinary problems.
  • Autonomy and technical adaptability: The ability to independently design, build, and troubleshoot complex optical tests and rapidly absorb complex, proprietary architectures.
  • Advanced Automation: Experience writing Python scripts for instrument control, hardware interfacing, and automated data acquisition.
  • Component Expertise: Deep understanding of ultra-high extinction ratio optical filtering techniques and integrated non-linear parametric processes.

This is for a new position. Your base salary will be determined based on your location, experience, and internal benchmarks. The base salary range is 140,000 - 190,000 CAD. You will also be eligible for equity and benefits.

About Xanadu

Xanadu Quantum Technologies is a Canadian quantum computing hardware and software company headquartered in Toronto, Ontario. The company develops cloud accessible photonic quantum computers and develops open-source software for quantum machine learning and simulating quantum photonic devices.
Learn more about Xanadu

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