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About the role

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  3. Cambridge Future Tech
  4. Scientific Simulation Engineer | Coherence Engine

This job is no longer live. The employer has closed or delisted this posting, so new applications are unlikely to be considered. See live jobs at Cambridge Future Tech or browse all sponsored jobs.

Cambridge Future Tech

Scientific Simulation Engineer | Coherence Engine

Cambridge Future TechCambridge, England, United Kingdom
View live jobs at this company
Added 3 Aug

Not disclosed

Salary

Not disclosed by employer

212955% match

SOC code · predicted

Engineering professionals n.e.c.

£46,100

Going rate

Skilled Worker going rate

This role may qualify for a Skilled Worker visa

SOC 2129 is an eligible occupation, but we classified this role with low confidence (55% match). If the code is right — and Cambridge Future Tech is a licensed sponsor — it should qualify, but double-check the occupation eligibility rules against the actual role.

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Full profile
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About the role

Company: Coherence Engine

Product: AnalogLab

Location: Flexible / Hybrid

Coherence Engine is pioneering electronic design automation tools for the developers of quantum computers. We are building AnalogLab, a simulation platform for modelling analogue, RF and quantum control systems. We are a mostly remote, AI native company.

We are looking for a computational physicist or simulation engineer to take ownership of the scientific integrity of the AnalogLab simulation engine. Your role will be to ensure that our models are physically meaningful, mathematically sound and reliable enough to support real engineering decisions.

This role could suit either:

  • A physicist, likely with a PhD or equivalent research experience, who has built and validated computational models.
  • An engineer who has worked on scientific or commercial simulation software, such as multiphysics, RF, circuit, control-system or CAE tools.

What you’ll do

  • Develop and improve the core AnalogLab simulation engine.
  • Translate physical systems into appropriate mathematical and computational models.
  • Implement models for analogue, RF and control-system components.
  • Define model assumptions, operating ranges and limitations.
  • Validate simulations against analytical results, measured data and established tools.
  • Investigate whether unexpected results arise from physics, numerical behaviour, input data or software defects.
  • Improve numerical accuracy, stability, convergence and computational performance.
  • Build testing and verification frameworks for scientific models.
  • Support the composition of individual component models into larger system-level simulations.
  • Work closely with software engineers, physicists and experimental partners.

What we’re looking for

  • A strong background in physics, applied mathematics, electrical engineering or a related technical discipline.
  • Experience building computational models or scientific simulation software.
  • Strong programming skills, ideally in Python and scientific-computing tools.
  • A good understanding of numerical methods, mathematical modelling and simulation.
  • Experience validating models against analytical solutions, experimental data or other simulation packages.
  • The ability to reason clearly about assumptions, uncertainty, sensitivity and model validity.
  • Experience writing maintainable, well-tested software rather than only one-off research scripts.
  • Particularly relevant experience

    Experience in one or more of the following would be valuable:

    • Computational or theoretical physics.
    • Experimentally driven modelling and system identification.
    • RF, microwave or analogue electronics.
    • S-parameters and network theory.
    • Circuit, signal-chain or control-system simulation.
    • Differential equations, frequency-domain methods or stochastic models.
    • Parameter estimation, optimisation and uncertainty propagation.
    • Scientific software, solver development or model-library development.
    • Tools such as COMSOL, Ansys, Keysight ADS, Cadence, SPICE, Simulink or similar.

    Prior quantum-computing experience would be useful, but is not required.

    What matters most

    We are not looking for a conventional backend engineer. The successful candidate will be someone who can look at a simulation result and ask:

    • Is the underlying model appropriate?
    • What assumptions have been made?
    • Over what range is the result valid?
    • How do we know the implementation is correct?
    • How sensitive is the result to uncertain inputs?
    • Does the model agree with real measurements?
    • Is an unexpected result physical, numerical or a software bug?

    This is an opportunity to shape the scientific foundations of a new engineering simulation platform from an early stage. If this sounds interesting, we'd like to hear from you!

    This posting is no longer live — Cambridge Future Tech may have other roles open.

    View live jobs at Cambridge Future Tech

    This description is the source posting as it read when we added it. We are not affiliated with Cambridge Future Tech, so check their own site for the current details.

    Where this offer sits in the market

    SOC 2129 · UK · ONS ASHE 2025 · ~167k in sample
    P25 £38kP75 £59k
    SOC 2129
    £31kmedian £46kgoing rate £46k£73k

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    About sponsorship for this role

    Does this job guarantee visa sponsorship?

    Not necessarily. Cambridge Future Tech holds a sponsor licence, but sponsorship for a specific hire is always the employer's decision. Be upfront in your application that you'll require it.

    What salary is needed for this role to be eligible?

    The offer must clear both the general threshold and the SOC 2129 going rate of £46,100. New-entrant and shortage discounts can lower it.