Scientist - Data-Driven Engineering
Scientist - Data-Driven Engineering

Scientist - Data-Driven Engineering

Banbury Full-Time 36000 - 60000 £ / year (est.) No home office possible
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At a Glance

  • Tasks: Join us to develop cutting-edge fusion technology and run simulations for innovative energy solutions.
  • Company: First Light Fusion is pioneering clean energy through advanced fusion technology in the UK.
  • Benefits: Enjoy competitive salary, 25 days leave, free lunches, and flexible working options.
  • Why this job: Be part of a revolutionary team shaping the future of energy with your ideas and expertise.
  • Qualifications: PhD in STEM or equivalent experience; strong skills in fluid dynamics and simulation tools required.
  • Other info: Collaborate with top scientists and engineers in a fast-paced, innovative environment.

The predicted salary is between 36000 - 60000 £ per year.

We are First Light Fusion, the UK’s inertial fusion company. Our mission is to work with the world’s leading fusion companies to accelerate the commercialisation of fusion energy - the last clean energy source the world needs. We do this by radically reducing the complexity and power demands of tomorrow’s fusion power plants using our unique amplifier technology and sophisticated simulation capabilities. Developed through our pioneering work in inertial fusion, they now can transform the feasibility of a range of fusion technologies. Together, we are working to bring the dawn of the age of fusion power far closer to today.

Role Purpose: We are looking for a skilled and experienced scientist or engineer to help develop our unique hydrodynamic amplifier and inertial fusion target technology. In this role, you will develop our amplifier technology for use in fusion targets as well as in novel material and impact testing applications. You will work with a highly skilled team of scientists and engineers taking a simulation-led development approach using our in-house developed hydrocodes and accelerated using latest AI & ML tools. Additionally, you will further develop the team’s simulation and AI & ML tools, improving the development cycle. First Light Fusion operates with its own experimental and manufacturing facilities, enabling us to move quickly and innovate. This will allow your ideas to progress from a basic concept to a working experiment over a short period of time. To facilitate this, you will collaborate across the company, using your expertise to ensure that targets are designed, manufactured, and fielded on experiments in a way that maximises performance. You will also act as a source of knowledge and experience, that other employees within the company can draw on when pursuing their own ideas.

Accountabilities and deliverables:

  • Use our in-house hydrodynamic and magnetohydrodynamic codes to invent new targets and develop current ones, aiming to achieve the highest possible pressures, velocities and fusion yields from First Light Fusion’s driver machines.
  • Run simulations to understand in-depth the dynamics and physical processes at work within our targets.
  • Use AI & ML tools to analyse results of ensembles of simulations, identify trends and perform numerical optimisation.
  • Provide specialist technical support and training, aiding other employees at First Light Fusion to develop their own target designs and interpret their results.

Essential:

  • PhD in a STEM subject, or equivalent industry experience.
  • Knowledge of Fluid Dynamics and experience in Computational Fluid Dynamics (CFD) simulation.
  • Proven track record of using simulation tools to design and develop complex, multiphysics based systems.
  • Ability to work effectively as part of a multidisciplinary team.
  • Strong communication and interpersonal skills.
  • Good programming skills.

Desirable:

  • Knowledge of high energy shock physics or inertial fusion physics.
  • Experience developing fusion target designs for experiments on international facilities.
  • Experience in Magnetohydrodynamics (MHD) simulation and modelling.
  • Experience with Machine Learning and other advanced optimisation methods.
  • Knowledge of Software Engineering good practice.
  • Experience using High Performance Computing systems.
  • Understanding of the numerical methods used in hydrodynamics codes.
  • Programming experience in Python, C++ or Fortran.

Package:

  • Competitive salary
  • 25 days annual leave + bank holidays (holiday increase based on service)
  • 40 hour working week
  • Office based in Oxford (flexible working options may be available on request)
  • Free lunch, snacks and soft drinks
  • Cycle to work scheme
  • Electric vehicle scheme
  • 8% employer pension contribution without matching requirements

Scientist - Data-Driven Engineering employer: First Light Fusion

At First Light Fusion, we pride ourselves on being an exceptional employer, offering a dynamic work environment in Oxford where innovation thrives. Our commitment to employee growth is evident through collaborative projects and access to cutting-edge technology, ensuring that your contributions directly impact the future of clean energy. With competitive benefits, including generous leave, a supportive culture, and unique perks like free lunches and a cycle-to-work scheme, we empower our team to excel both professionally and personally.
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Contact Detail:

First Light Fusion Recruiting Team

StudySmarter Expert Advice 🤫

We think this is how you could land Scientist - Data-Driven Engineering

✨Tip Number 1

Familiarise yourself with the latest advancements in hydrodynamic and magnetohydrodynamic simulation tools. Being well-versed in these areas will not only boost your confidence during interviews but also demonstrate your commitment to the field.

✨Tip Number 2

Network with professionals in the fusion energy sector, especially those who have experience with AI and ML applications in simulations. Engaging in discussions or attending relevant conferences can provide insights and connections that may help you stand out.

✨Tip Number 3

Prepare to discuss specific projects where you've successfully used simulation tools to solve complex problems. Highlighting your hands-on experience will showcase your practical skills and ability to contribute to First Light Fusion's innovative environment.

✨Tip Number 4

Stay updated on the latest research and developments in inertial fusion physics and high energy shock physics. This knowledge will not only enhance your understanding but also allow you to engage in meaningful conversations during the interview process.

We think you need these skills to ace Scientist - Data-Driven Engineering

PhD in a STEM subject or equivalent industry experience
Fluid Dynamics knowledge
Computational Fluid Dynamics (CFD) simulation experience
Simulation tools for complex multiphysics systems
Strong programming skills in Python, C++ or Fortran
Experience with Machine Learning and advanced optimisation methods
Knowledge of high energy shock physics or inertial fusion physics
Magnetohydrodynamics (MHD) simulation and modelling experience
Understanding of numerical methods used in hydrodynamics codes
Ability to work effectively in a multidisciplinary team
Strong communication and interpersonal skills
Experience using High Performance Computing systems
Technical support and training capabilities

Some tips for your application 🫡

Tailor Your CV: Make sure your CV highlights your relevant experience in fluid dynamics, computational fluid dynamics (CFD), and any simulation tools you've used. Emphasise your PhD or equivalent industry experience, and showcase your programming skills in Python, C++, or Fortran.

Craft a Strong Cover Letter: In your cover letter, express your passion for fusion energy and how your background aligns with First Light Fusion's mission. Mention specific projects or experiences that demonstrate your ability to work in a multidisciplinary team and your expertise in AI & ML tools.

Highlight Relevant Projects: Include details of any relevant projects or research you have conducted, particularly those involving hydrodynamic codes or high energy shock physics. This will help illustrate your hands-on experience and problem-solving skills.

Showcase Communication Skills: Since strong communication and interpersonal skills are essential for this role, provide examples in your application of how you've effectively collaborated with others or trained colleagues in technical subjects. This can set you apart from other candidates.

How to prepare for a job interview at First Light Fusion

✨Showcase Your Technical Expertise

Be prepared to discuss your PhD research or relevant industry experience in detail. Highlight your knowledge of fluid dynamics, computational fluid dynamics (CFD), and any specific simulation tools you've used. This will demonstrate your technical capability and how it aligns with the role.

✨Demonstrate Collaboration Skills

Since the role involves working within a multidisciplinary team, share examples of past collaborations. Discuss how you effectively communicated complex ideas to non-experts and contributed to team projects, showcasing your interpersonal skills.

✨Prepare for Problem-Solving Questions

Expect questions that assess your problem-solving abilities, especially related to simulation and optimisation. Be ready to walk through your thought process on how you would approach designing new targets or improving existing ones using AI & ML tools.

✨Express Your Passion for Fusion Energy

Convey your enthusiasm for fusion energy and its potential as a clean energy source. Share any relevant experiences or insights that reflect your commitment to advancing this field, which will resonate well with the company's mission.

Scientist - Data-Driven Engineering
First Light Fusion
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  • Scientist - Data-Driven Engineering

    Banbury
    Full-Time
    36000 - 60000 £ / year (est.)

    Application deadline: 2027-04-21

  • F

    First Light Fusion

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