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Geant4 Jobs in Kentucky (NOW HIRING)

$120 - $160/hr

Expertise with radiation transport codes ( Geant4, MCNP, SRIM/TRIM, FLUKA ) and space environment prediction tools ( CREME96/CREMEMC, SPENVIS, AP9/AE9, SHIELDOSE-2 ). Physical Demands or Work ...

$156 - $214/hr

Demonstrated experience performing Monte Carlo radiation‐transport calculations for hardware development, such as collimation, shielding, or leakage analysis (e.g., using Geant4, or equivalent)

Geant4 information

What is Geant4?

Geant4 is a software toolkit for the simulation of the passage of particles through matter, widely used in high energy physics, nuclear experiments, and medical physics. It allows scientists and engineers to model how particles interact with complex geometries and materials, helping to design detectors and optimize experiments. Written in C++, Geant4 provides a flexible and extensible framework for simulating physics processes such as electromagnetic, hadronic, and optical interactions. The toolkit is developed by an international collaboration and is open-source, making it accessible to researchers around the world.

What are the key skills and qualifications needed to thrive as a Geant4 simulation developer?

To thrive as a Geant4 Simulation Developer, you need strong proficiency in C++ programming, a solid background in physics or engineering, and experience with Monte Carlo particle transport simulations. Familiarity with the Geant4 toolkit, scientific computing libraries, and version control systems like Git is typically required, and advanced degrees or certifications in physics or related fields are highly beneficial. Analytical thinking, problem-solving skills, and effective collaboration are essential soft skills for excelling in this role. These competencies are crucial for developing accurate simulations, troubleshooting complex issues, and supporting research or engineering projects in scientific and medical domains.

What are some common challenges faced by Geant4 developers when integrating simulations into larger research projects?

One common challenge Geant4 developers encounter is ensuring seamless integration of complex simulations into multidisciplinary research environments, which often involve collaboration with scientists, engineers, and software teams. This typically requires adapting simulation outputs to match the data formats and analysis workflows of the broader project, as well as maintaining code compatibility with evolving software dependencies. Effective communication and a solid understanding of project requirements are crucial to address these challenges and to contribute meaningful results to the team’s goals.

What is the difference between Geant4 vs Medical Physicist?

AspectGeant4Medical Physicist
Required CredentialsPhysics or engineering degree, programming skillsPhysics or medical physics degree, certification (e.g., ABR)
Work EnvironmentResearch labs, simulation developmentHospitals, clinics, radiation therapy centers
Industry UsageParticle physics, radiation simulationMedical imaging, radiation therapy, diagnostics

While Geant4 focuses on developing and implementing physics simulations for research, Medical Physicists apply physics principles to diagnose and treat patients using radiation. Both roles require strong physics backgrounds, but their work environments and applications differ significantly.

What are popular job titles related to Geant4 jobs in Kentucky?

For Geant4 jobs in Kentucky, the most frequently searched job titles are:

Sr Radiation Physicist/Engineer - Microelectronics

Zel Technologies, LLC

On-site

$120 - $160/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 5 days ago


Job description

If you are unable to complete this application due to a disability, contact this employer to ask for an accommodation or an alternative application process.

Full Time 58 Melbourne ZEL OFC, Melbourne, FL, US

*This position is contingent upon contract award. *

* This position is eligible for a $500 ZelTech Non-Employee Referral fee. ContactZelTech Recruiters for questions concerning this matter. *

Job Summary:

ZelTech is seeking a Senior Radiation Physicist/Engineer to lead predictive analysis and radiation-effects modeling for microelectronics integrated into space-and terrestrial assets. In this role, you will bridge space environment physics, computational radiation modeling, and empirical test correlation. The ideal candidate’s efforts will result in analysis tools used to support design and development of microelectronic components, subsystems, and payloads that can survive and perform reliably across long-duration space and terrestrial missions. Resulting efforts will also support predictive analysis of performance thresholds for already deployed assets.

The ideal candidate possesses deep expertise in space radiation environments (trapped belts, galactic cosmic rays, solar particle events), radiation-matter interaction theory, advanced data analytics, and will play a pivotal role in predicting asset survivability, shaping radiation-hardened-by-design (RHBD) architectures, and correlating predictive models against real-world and test data.

Responsibilities:
  • Space-Domain Modeling: Develop, validate, and refine predictive physics models to evaluate single-event effects (SEE), total ionizing dose (TID), enhanced low-dose-rate sensitivity (ELDRS), and displacement damage dose (DDD) in advanced microelectronics intended for orbital and deep-space platforms.
  • Radiation Transport Simulations: Perform high-fidelity transport and energy-deposition simulations across component, board, and system-level shielding configurations.
  • Failure Mechanism Analysis: Apply radiation impact theory to identify physical degradation mechanisms and single-event phenomena in semiconductor technologies (e.g., FinFET, FD-SOI, GaN, SiC, 3D ICs).
Data Analysis & Empirical Correlation
  • Complex Data Integration: Process, analyze, and synthesize large, high-dimensional datasets combining environment models, simulated physics outcomes, and accelerator ground-testing data.
  • Correlation Studies: Design and execute statistical correlation studies comparing predicted asset radiation responses against empirical test data.
  • Model Validation: Calibrate theoretical and computational frameworks using ground test results to continuously improve prediction accuracy and quantify model uncertainty for high-reliability mission profiles.
Requirements:
  • Must be a US citizen.
  • Ability to obtain a TS/SCI clearance.
  • Must have a master’s Degree or Ph.D. in Physics, Nuclear Engineering, Electrical Engineering (with a focus on semiconductor physics), Aerospace Engineering, or a related discipline and 7+ years of post-graduate professional or research experience in radiation physics, space environment analysis, or radiation effects on microelectronics.
  • Successful background and drug screening check.
Technical Skills & Expertise
  • Radiation & Microelectronics Theory: Deep theoretical understanding of radiation environments, charge transport, single-event transients/upsets, micro-dosimetry, and displacement damage in microelectronics.
  • Advanced Data Analysis: Proficiency in statistical data analysis, regression models, and data visualization using programming environments such as Python (NumPy, SciPy, Pandas), MATLAB, or R.
  • Empirical Data Correlation: Proven track record of evaluating radiation test data (heavy ion, proton, neutron, gamma, X-ray) and conducting data-driven validation against predictive models for flight microelectronics.
Soft Skills
  • Strong technical writing capability with experience writing comprehensive analytical reports and readiness reviews.
  • Excellent communication skills, with the ability to translate complex physics concepts for cross-functional teams.
  • Strong problem-solving mindset and comfort navigating multi-variable, empirical-versus-modeled data discrepancies.
Preferred Requirements:
  • Direct experience supporting satellite programs, space domain payloads, or high-reliability (Class S / Space-grade) microelectronics development.
  • Familiarity with space testing standards and guidelines (e.g., MIL-STD-883 Method 1017/1019, JESD57, ASTM, ESCC 22900).
  • Experience with advanced node geometries () or wide-bandgap semiconductors (GaN, SiC) engineered for space power and RF systems.
  • Background in analyzing telemetry data from on-orbit radiation monitors or spacecraft microelectronics to validate ground predictions.
  • Current active Security Clearance.
  • Modeling & Simulation Tools: Expertise with radiation transport codes (Geant4, MCNP, SRIM/TRIM, FLUKA) and space environment prediction tools (CREME96/CREMEMC, SPENVIS, AP9/AE9, SHIELDOSE-2).
Physical Demands or Work Environment:

The work environment characteristics and physical demands described here are representative of those an employee encounters while performing the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

  • The majority of the time is spent in an office setting.
  • Occasionally lift and/or move up to 25 pounds.
  • Specific vision abilities required include close vision, distance, vision, color vision and ability to adjust focus.
About ZelTech:

Founded in 1988 by Ret. Col. Jack L. Ezzell Jr., Zel Technologies is a trusted leader in national security, providing comprehensive research, development, engineering, and operational support to the Department of Defense, the Intelligence Community, and federal agencies. Originally focused on leveraging operational and software expertise to improve time-critical targeting capabilities for the military, the company advanced its capabilities to provide scientific and HUMINT expertise for CBRNE collection and analysis. In the wake of 9/11, Zel Technologies rapidly expanded its capabilities to provide turnkey ISR support services to US Special Operations Forces (SOF), as well as advanced technical & operational intelligence, physical & data science, and engineering support services to the greater Intelligence and SOF Communities supporting global counterterrorism and CWMD operations.

Today, Zel Technologies remains at the forefront of intelligence missions, advancing CWMD and global counterterrorism efforts, while also addressing emerging threats posed by near-peer adversaries. Our team remains committed to delivering adaptive, innovative, and cost-effective solutions across multiple domains, in alignment with the mission priorities of the U.S. Government and its partner nations.

Our Mission:

Through our commitment to innovation and quality, our skilled teams deliver robust, technology driven solutions and insights that empower our customers to overcome complex challenges and achieve their mission objectives.

Our Workforce:
  • Medical, Dental and Vision Insurance
  • 401k immediate vesting with company match
  • Flexible Spending Accounts
  • Health Savings Account with company contributions
  • Employee Assistance Program (EAP)
  • Bonuses for performance
  • Educational assistance and special training programs
  • Voluntary benefits (accidental, critical illness, whole life)
  • Group life insurance (Company paid)
  • Short-term and Long-term Disability Insurance (Company paid)
  • Paid Time Off (PTO), Holiday Leave, Jury Duty, and Military Leave
  • Health and fitness reimbursement
  • Employee discounts on various services and products

ZelTech is an equal opportunity employer and does not discriminate based on race, color, religion, creed, sex, age, sexual orientation, national origin, disability, marital status, military status, genetic predisposition, or any other basis protected by law.

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