PsiQuantum

High-speed Photonic Experimentalist

PsiQuantum$152K — $175K *
Telecommunications & Hardware
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • MS or PhD in electrical engineering, applied physics, optical engineering, or related field.
  • Hands-on experience with RF, microwave, and optical test equipment.
  • Strong knowledge of integrated photonic devices including electro-optic phase shifters and modulators.
  • Experience in developing automated test systems and measurement scripts.
  • Strong data analysis capabilities with a focus on statistical interpretation.
  • Ability to create clear characterization plans and analyze complex measurement results.

Responsibilities

  • Conduct electro-optic characterization and validation of high-speed photonic devices.
  • Translate device requirements and expected outcomes into actionable test plans.
  • Analyze measurement data to diagnose performance issues and recommend enhancements.
  • Develop and refine characterization methods and automation tools.
  • Collaborate with teams across multiple domains to enhance photonic chip performance.
  • Document procedures, results, and insights in a clear and thorough manner.
  • Mentor junior engineers and contribute to their professional growth.

Benefits

  • Opportunity to work on groundbreaking technologies in quantum computing.
  • Collaborative, multidisciplinary work environment with diverse teams.
  • Exposure to high-precision testing and development of innovative photonic devices.
Full Job Description
Job Summary:

PsiQuantum is seeking a high-speed photonics experimentalist to develop phase modulators, switches, and other active photonic components for the world's first fault-tolerant quantum computer.

In this role, you will own the characterization, analysis, and performance validation of high-speed active photonic devices, circuits, and subsystems. You will work closely with teams across electronics, manufacturing, test, packaging, and system validation to translate device-level results into robust system-level performance.

The ideal candidate will have deep hands-on experience with high-speed electro-optic characterization and a strong understanding of passive and active photonic components, including electro-optic phase shifters, switches, modulators, and related integrated photonic devices.

The hiring level and scope for this role will be calibrated to the selected candidate's experience and strengths. Candidates with relevant PhD/postdoctoral exposure, as well as those with additional industry experience, are encouraged to apply.

Responsibilities:
  • Own high-speed electro-optic characterization and validation of active photonic devices, circuits, and subsystems, including electro-optic phase shifters, switches, modulators, and related components.
    • Tests include S-parameter measurements, high-speed time domain waveform measurements, switching response, bandwidth, insertion loss, extinction ratio, and related device- and circuit-level metrics.
    • The candidate will need to work across different test configurations, including wafer-level probing, connectorized photonic/electronic devices, packaged assemblies, and integrated builds incorporating photonic chips, PCBs, drivers, FPGAs, firmware, and related hardware.
  • Translate device requirements, system needs, and expected learning objectives into executable characterization plans.
  • Analyze and model measurement data to understand device, circuit and subsystem behavior, diagnose performance limitations, and recommend improvements.
  • Develop new characterization methods, automation tools, and analysis workflows as needed.
  • Collaborate closely with multidisciplinary teams across photonics, electronics, packaging, manufacturing, test, firmware, and system validation to help design, build, test, and improve high-performance photonic chips and assemblies.
  • Document measurement methods, calibration procedures, results, and conclusions clearly and rigorously.
  • Mentor junior team members.

Experience/Qualifications:
  • MS or PhD in electrical engineering, applied physics, optical engineering, photonics, or a related technical discipline. Industry experience is a plus.
  • Deep understanding of integrated photonic devices and circuits, including passive and active components such as waveguides, electro-optic phase shifters, switches, modulators, and related high-speed photonic devices.
  • Hands-on experience with standard RF, microwave, and optical test equipment, including oscilloscopes, signal generators, VNAs, high-speed probes, optical power meters, lasers, photodetectors, and related laboratory equipment.
  • Experience with high-speed electro-optic measurements, including electro-optic S-parameters, high-speed waveform measurements, bandwidth, and related device- and circuit-level metrics.
  • Strong understanding of RF measurement concepts, including S-parameters, impedance matching, bandwidth, signal integrity, calibration, de-embedding, and measurement uncertainty.
  • Experience developing automated test systems, measurement scripts, data pipelines, or analysis tools for photonic, RF, or high-speed electro-optic characterization.
  • Strong data analysis skills, including data visualization, statistical interpretation of measurement results, and data-driven decision-making.
  • Ability to translate device requirements and experimental learning goals into clear test plans, execute measurements, analyze results, and communicate conclusions.
  • Experience with one or more active photonic material platforms, such as thin-film lithium niobate, BTO, doped silicon, InP, GaAs, AlGaAs, InGaAsP, or related electro-optic platforms, is a plus.
  • Understanding of photonic-electronic interfaces and integrated build architectures, including PCBs, RF interconnects, high-speed drivers, FPGAs, TIAs, firmware-controlled test systems, wirebonds, and related electronics, is a plus.
  • Experience with photonic packaging and assembly-level integration is a plus.
  • Experience designing, simulating, or modeling photonic and electro-optic components using tools such as Ansys Lumerical, Tidy3D, COMSOL Multiphysics, Meep, or similar platforms is a plus; experience with RF or high-speed electronic simulation tools such as HFSS, ADS, Cadence AWR, or SPICE-based tools is also a plus.
  • Familiarity with high-volume or manufacturing-oriented test environments, including repeatability, reproducibility, calibration control, and measurement process documentation, is a plus.
  • Able to work independently with limited direction while maintaining strong alignment with project goals and cross-functional priorities.
  • Collaborative and effective in a multidisciplinary engineering environment spanning photonics, electronics, packaging, manufacturing, test, firmware, and system validation.
  • Strong project planning and execution skills, including the ability to manage priorities, track progress, and deliver high-quality results on schedule.
  • Excellent written and verbal communication skills, with the ability to communicate technical results clearly to a range of audiences.
  • Strong critical thinking, analytical, creative, and detail-oriented problem-solving skills.
  • Comfortable operating in a fast-paced startup environment with evolving requirements and ambitious technical goals.

The ranges below reflect the target ranges for a new hire base salary. One is for the Bay Area (within 50 miles of HQ, Palo Alto), the second one (if applicable) is for elsewhere in the US (beyond 50 miles of HQ, Palo Alto). If there is only one range, it is for the specific location of where the position will be located. Actual compensation may vary outside of these ranges and is dependent on various factors including but not limited to a candidate's qualifications including relevant education and training, competencies, experience, geographic location, and business needs. Base pay is only one part of the total compensation package. Full time roles are eligible for equity and benefits. Base pay is subject to change and may be modified in the future.

U.S. Base Pay Range

$110,000-$145,000 USD

Bay Area Pay Range

$152,000-$175,000 USD

About PsiQuantum

PsiQuantum is a California-based company that is developing a quantum computer using photonics technology. The company's goal is to build a fault-tolerant quantum computer with millions of qubits, which would be capable of solving problems that are currently intractable with classical computers. PsiQuantum was founded in 2016 by a team of experts in photonics, quantum computing, and computer science. The company has received funding from investors such as BlackRock, Founders Fund, and Atomico.
Learn more about PsiQuantum
Size
100 employees
Industry
Founded
2016

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