Data Scientist

Posted 19 Days Ago
San Leandro, CA, USA
In-Office
145K-190K Annually
Entry level
Energy • Renewable Energy
The Role
Build coupled fusion-device simulation models, radiation and surrogate models, diagnostic data pipelines, Bayesian inference systems, and uncertainty quantification tools. The role covers pulsed-power circuits, plasma dynamics, neutron and X-ray production, machine lifetime modeling, and HPC-enabled computation. The scientist will write production-grade numerical software, validate models against experimental diagnostics, document assumptions, and eventually grow a simulation team.
Summary Generated by Built In
About Fuse

We are building one of the most potentially consequential companies of the century. Our mission is to accelerate the world's transition to fusion energy while safeguarding humankind. This is not a normal company. This is not a normal job. We are committed for the long term to win.

About the Role

You will build our in-house simulation stack — the models that predict what our fusion machines will do, and the inference machinery that pulls physics out of shot data. This is not a “fit a curve to a dashboard” data science role.

Core Responsibilities
  • Build a coupled simulation framework for our DPF: pulsed-power circuit, sheath formation and run-down (snowplow / slug / Lee-type models, progressing toward MHD), pinch and instability development, and neutron and X-ray production.

  • Implement radiation source-term models: thermonuclear vs. beam-target neutron-yield decomposition, bremsstrahlung and line-emission spectra, and anisotropy.

  • Develop surrogate and reduced-order models so designers and physicists can iterate on parameter sweeps without standing up an HPC job each time.

  • Build the data pipeline that ingests every shot's diagnostic stream, including Rogowski coils, B-dots, silver activation, time-of-flight neutron detectors, filtered diodes, and fast cameras, and joins it to predicted output for systematic residual analysis.

  • Quantify uncertainty seriously: Bayesian inference over model parameters, identifiability analysis, and honest error bars on yield predictions.

  • Stand up simulations of supporting machine outputs, including anode/cathode lifetimes, electrode erosion models, and capacitor-bank aging, so operations decisions are informed by physics rather than vibes.

  • Publish internally with the same standards you'd publish externally: derivations written out, assumptions stated, code reviewed.

  • Eventually grow a small simulation team. For now, you will be a force multiplier of one.

Minimum Qualifications

  • PhD in Physics, Applied Mathematics, Plasma Physics, Computational Science, Nuclear Engineering, or a closely related field. An exceptional Master's candidate with a strong publication record will be considered.

  • Strong academic record, with a target GPA of 3.8+ from a competitive program.

  • Demonstrable depth in at least one of: magnetohydrodynamics, kinetic plasma theory, radiation transport, or pulsed-power circuit modeling. Familiarity with the others.

  • Fluency in vector and tensor calculus, Maxwell's equations in arbitrary geometries, hyperbolic PDEs and numerical schemes, Bayesian statistics, and optimization under constraints.

  • Production-grade Python using NumPy, SciPy, xarray, JAX, or PyTorch for differentiable physics, with comfort dropping into C++ or Fortran when Python isn't fast enough.

  • Experience writing simulation code from scratch, not just running someone else's solver.

  • Ability to read a physics paper, identify the load-bearing assumption, and determine quickly whether it applies to our regime.

Preferred Qualifications
  • Hands-on experience with one or more of: MCNP, GEANT4, FLUKA, PIC codes such as LSP, EPOCH, or WarpX; MHD codes such as USim, FLASH, or HYDRA-class; or DPF-specific codes such as Lee model or GORGON-adjacent work.

  • Prior work fitting models to noisy experimental diagnostics, including neutron TOF, X-ray spectroscopy, or magnetic-probe arrays.

  • HPC experience including SLURM, MPI, GPU acceleration, and profiling at scale.

  • Familiarity with the DPF literature or adjacent fields such as Z-pinch, MagLIF, or ICF, and a track record of getting up to speed quickly.

  • Strong software-engineering hygiene: version control, tests for numerical code, and reproducible environments.

What We Value
  • Give a shit. Build things you're proud of.

  • Take responsibility. If something is broken and you can fix it, fix it. See things through.

  • Move fast. Make decisions, learn quickly, and keep moving forward.

  • Think bigger. Simplify relentlessly. Don't default to the safe answer.

  • Disagree and commit. The best idea wins. Once a decision is made, we move.

  • Desire to win. This is hard. Expect intensity. We are here to win.

  • Plan B is to make Plan A work.

Additional Requirements

This is not a remote position and will require relocation if not already local to the applicable Fuse facility.

Benefits
  • Medical, dental, and vision coverage.

  • Relocation assistance for roles that require it.

  • Flexible time off. Take what you need, no accrual tracking.

  • 2 weeks of paid time off built into the end of each year, subject to team and business needs.

  • Supportive leave of absence policies.

  • Paid leave for new parents.

ITAR Requirements

To conform to U.S. Government technology export regulations, including the International Traffic in Arms Regulations (ITAR), you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State.

Equal Opportunity

Fuse is an Equal Opportunity Employer; employment with Fuse is governed on the basis of merit, competence, and qualifications and will not be influenced by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, ancestry, immigration status, sexual orientation, gender identity, marital status, mental or physical disability, or any other legally protected status.

Skills Required

  • PhD in Physics, Applied Mathematics, Plasma Physics, Computational Science, Nuclear Engineering, or a closely related field
  • Exceptional Master's degree candidate with a strong publication record may be considered
  • Strong academic record, with a target GPA of 3.8 or higher from a competitive program
  • Depth in magnetohydrodynamics, kinetic plasma theory, radiation transport, or pulsed-power circuit modeling, with familiarity in the others
  • Fluency in vector and tensor calculus, Maxwell's equations, hyperbolic PDEs, numerical schemes, Bayesian statistics, and constrained optimization
  • Production-grade Python numerical programming and comfort using C++ or Fortran for performance-critical work
  • Experience writing simulation code from scratch
  • Ability to evaluate physics papers and assess whether their assumptions apply to the target regime
  • Experience with MCNP, GEANT4, FLUKA, PIC, MHD, or DPF-specific simulation codes
  • Experience fitting models to noisy experimental diagnostics, including neutron, X-ray, or magnetic-probe data
  • HPC experience with SLURM, MPI, GPU acceleration, and large-scale profiling
  • Familiarity with DPF, Z-pinch, MagLIF, or ICF literature
  • Version control, numerical testing, and reproducible software environments
  • Must be able to work onsite and relocate if not local to the applicable Fuse facility
  • Must be a U.S. citizen, lawful permanent resident, protected individual, or eligible to obtain required ITAR authorizations
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The Company
HQ: Burlington, VT
38 Employees
Year Founded: 2019

What We Do

Fuse is on a mission to accelerate the world's transition to fusion energy while safeguarding humankind. Since 2019, we've built 3 functioning and record-breaking pulsed power fusion machines, with dual applications: commercial power generation (long term), and supporting the US and Allies' national security through radiation effects testing capabilities (immediate term). TITAN, our latest machine, is the world's first high-power (1TW) Impedance Matched Marx Generator, with experimental results peer-reviewed and published in Nature Scientific Reports: https://www.nature.com/articles/s41598-024-67774-4 TITAN is the building block of our technology roadmap, leading to fusion pilot plant demonstration with APEIRON I. Learn more and apply to join at www.f.energy

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