Hypersonics Defense Engineer
The job description
Tech stack. hypersonic CFD solvers, aerothermodynamics, thermal protection materials, scramjet cycle analysis, trajectory optimization, MATLAB, Python, high-temperature materials testing
About the role
You will join a defense technology company working in the hardest flight regime there is: sustained flight above Mach 5, where the air itself changes chemistry and heating can destroy a vehicle in seconds. The hypersonics team designs vehicles and interceptors that survive extreme aerothermal environments, manage shock-boundary layer interactions, and stay controllable across the full trajectory. Your analyses decide whether a concept can actually fly, grounding propulsion, thermal protection, and trajectory trades in physics that independent reviewers can verify.
What you will achieve
- Run aerothermodynamic analyses that predict stagnation heating within 15 percent of wind tunnel or flight data for a representative vehicle.
- Size thermal protection systems for a hypersonic trajectory, trading ablative and reusable materials against mass and turnaround constraints.
- Build trajectory optimization models that maximize range or intercept geometry while respecting heating, load, and controllability limits.
- Evaluate scramjet propulsion concepts through cycle analysis, quantifying specific impulse and operability across the flight envelope.
- Deliver design review packages with quantified margins on heating, structures, and stability that survive independent technical review.
- Deliver coupled aerothermal-structural assessments that give the structures team heating inputs with quantified uncertainty bands.
What you will bring
Must-haves
- You bring 2 to 5 years of experience in hypersonics, high-speed aerodynamics, or reentry vehicle analysis.
- You have run CFD for supersonic or hypersonic flows and understand meshing, turbulence modeling, and chemistry effects.
- You grasp aerothermodynamics: shock layers, boundary layer transition, real gas effects, and convective versus radiative heating.
- You are familiar with thermal protection materials, including ablatives, carbon-carbon, and ceramic matrix composites.
- You code in MATLAB or Python for trajectory analysis, data reduction, and trade studies.
- You communicate heating and performance results clearly to structures, propulsion, and guidance teams.
- You have correlated CFD or engineering predictions with wind tunnel or flight test data, quantifying uncertainty and model error.
Nice-to-haves
- You have supported hypersonic wind tunnel testing or flight test data analysis.
- You bring experience with scramjet inlet, isolator, or combustor analysis.
- You understand plasma sheath effects on RF communication during hypersonic flight.
- You are eligible for a U.S. security clearance.
- You bring experience with ablation modeling or material response codes for thermal protection analysis.
RTX
Lockheed Martin
Northrop Grumman
Anduril
General Dynamics
BAE Systems