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Physicist Phd Jobs in Indiana (NOW HIRING)

PhD in Electrical Engineering or Physics. * 5+ years of experience in antenna design. * Expert understanding of electromagnetics and computational methods. * Design experience in microwave passive ...

PhD in STEMScience, Engineering, Mathematics, physics and no experience * In order to be considered for this role, must be a U.S. citizen with the ability to obtain and maintain a high-level security ...

Doctorate degree or PhD in Physics, Electrical Engineering, or Nuclear Engineering. * 10+ years of radiation engineering experience with the Department of Defense * Active Secret Clearance ...

Master's degree or PhD in Physics, Electrical Engineering, or Nuclear Engineering. * 10+ years of radiation engineering experience with the Department of Defense * Has a current Secret or Top-Secret ...

Radiation Effects Scientist

Crane, IN · On-site

$150K - $200K/yr

Doctorate degree or PhD in Physics, Electrical Engineering, or Nuclear Engineering. * 10+ years of radiation engineering experience with the Department of Defense * Active Secret Clearance ...

Showing results 21-40

Physicist Phd information

See Indiana salary details

$37.6K

$90.2K

$215.5K

How much do physicist phd jobs pay per year?

As of Sep 2, 2026, the average yearly pay for physicist phd in Indiana is $90,213.00, according to ZipRecruiter salary data. Most workers in this role earn between $56,100.00 and $106,600.00 per year, depending on experience, location, and employer.

What is a physicist PhD?

Physicist PhDs are individuals who have earned a doctoral degree (PhD) in physics, demonstrating advanced knowledge and research skills in the field. They typically conduct original research in areas such as quantum mechanics, condensed matter physics, or astrophysics, and contribute to scientific understanding through experiments, theory, or computational work. Many Physicist PhDs work in academic, government, or industry settings, applying their expertise to solve complex scientific and technological problems. Their work often includes publishing research, teaching, and collaborating with other scientists.

What are some common interdisciplinary collaborations that a physicist PhD might engage in, and how do these collaborations impact daily work?

Physicist PhDs often collaborate with professionals from fields like engineering, computer science, materials science, and biology, depending on their research focus. These interdisciplinary partnerships can involve joint experiments, data analysis, and developing new technologies or methodologies. Such collaborations enrich daily work by exposing physicists to diverse perspectives and innovative approaches, while also requiring strong communication and project management skills. Working across disciplines can lead to groundbreaking discoveries and broaden career opportunities within both academia and industry.

What are the key skills and qualifications needed to thrive as a physicist PhD, and why are they important?

To thrive as a Physicist PhD, you need advanced knowledge of physics concepts, strong analytical skills, and a doctoral degree in physics or a related field. Proficiency with scientific programming languages (such as Python or MATLAB), laboratory equipment, and data analysis software is typically required. Critical thinking, effective communication, and collaboration are vital soft skills for presenting research and working in multidisciplinary teams. These competencies enable physicists to drive scientific discovery, clearly convey complex ideas, and contribute valuable insights to their field.

What is the difference between Physicist Phd vs Materials Scientist?

AspectPhysicist PhdMaterials Scientist
Required credentialsPhD in Physics, advanced research experienceTypically a PhD in Materials Science or related field
Work environmentResearch labs, academia, government agenciesIndustrial labs, manufacturing, research institutions
Industry usageFundamental research, academia, government projectsProduct development, materials testing, quality control

Physicist Phd and Materials Scientist both hold advanced degrees and conduct research, but physicists focus on fundamental physical principles, while materials scientists specialize in material properties and applications. Their work environments and industry applications differ, with physicists often in academia or government labs, and materials scientists in industry settings.

Are physics PhDs employable?

Physics PhDs are highly employable in various fields such as academia, research institutions, government labs, and industry sectors like technology, engineering, and data analysis. Success often depends on additional skills like programming, experimental techniques, and communication, as well as networking and postdoctoral experience.

Is a physicist PhD worth it?

A physicist with a PhD often has access to advanced research, academic, and specialized industry roles that require deep expertise. While earning a PhD involves significant time and financial investment, it can lead to higher earning potential and opportunities in research, development, and academia compared to those with only a bachelor's or master's degree.

What jobs can a physicist PhD get?

A physicist with a PhD can pursue careers in research and development, academia, data analysis, engineering, and scientific consulting. They often work in laboratories, universities, government agencies, or private industry, utilizing skills in problem-solving, mathematical modeling, and experimental design.

What are popular job titles related to Physicist Phd jobs in Indiana?

For Physicist Phd jobs in Indiana, the most frequently searched job titles are:

What cities in Indiana are hiring for Physicist Phd jobs?

Cities in Indiana with the most Physicist Phd job openings:

Infographic showing various Physicist Phd job openings in Indiana as of August 2026, with employment types broken down into 100% Full Time. Highlights an 77% In-person, 14% Hybrid, and 9% Remote job distribution, with an average salary of $90,213 per year, or $43.4 per hour.

Modeling and Simulation Engineer (Multi Domain Physics)

V2X

Indianapolis, IN

Full-time

Re-posted 10 days ago


V2X rating

9.0

Company rating: 9.0 out of 10

Based on 43 frontline employees who took The Breakroom Quiz

52nd of 451 rated engineering


Job description

Overview

Working across the globe, V2X builds smart solutions designed to integrate physical and digital infrastructure from base to battlefield. We bring 120 years of successful mission support to improve security, streamline logistics, and enhance readiness. Aligned around a shared purpose, our $3.9B company and 16,000 people work alongside our clients, here and abroad, to tackle their most complex challenges with integrity, respect, responsibility, and professionalism.


The Modeling and Simulation Engineer (Multi-Domain Physics) will develop actuator models and system-level integrations to support aerospace research and product development. This role focuses on creating and validating mathematical models and multi-body dynamic simulations using MATLAB, Simulink, and Simscape to analyze the performance of thermal fluid systems, pneumatic actuators, and electro-mechanical mechanisms. The engineer will collaborate with cross-functional teams, guide global modeling initiatives, and provide technical leadership to advance model-based engineering practices.


Responsibilities

Key Responsibilities:

  • Develop multi-domain physics-based plant models and multi-body dynamic simulations for aerospace systems, including actuators, thermal fluid systems, and dynamic mechanical systems.
  • Validate models using experimental lab data, application testing, and hardware-in-the-loop (HIL) setups.
  • Support controls integration with system-level simulations for closed-loop performance verification and stability analysis.
  • Analyze actuator-structure interactions, load transmission, and transient responses using multi-domain coupling techniques.
  • Refine and update models based on experimental results to improve predictive accuracy and reliability.
  • Collaborate with global teams and product teams to define modeling objectives, assumptions, and expected results while ensuring the technical quality of model deliverables.
  • Document analysis processes and produce traceable verification artifacts, including interface control documents and verification matrices.
  • Mentor junior engineers, support global modeling efforts, and champion best practices for modeling and simulation workflows.

Qualifications

Required Skills:

  • Minimum of six (6) years of relevant professional experience, including hands-on work in modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Expertise in MATLAB, Simulink, and Simscape (including Simscape Fluids) for modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Proficiency in modeling and simulation tools for dynamic systems and thermal-fluid systems.
  • Experience with hardware-in-the-loop testbeds, real-time model deployment, and system testing.
  • Ability to implement systems engineering principles for simulation activities, including multidisciplinary system coupling and actuator integration.
  • Strong technical data analysis, model refinement, and verification skills using experimental and flight test data.
  • Excellent cross-functional communication and teamwork abilities, including mentoring, technical oversight, and delivering traceable verification artifacts.         
  • Familiarity with aerospace and defense standards (e.g., MIL-STD-810/DO-254).
  • US Citizenship with the ability to obtain and maintain a secret clearance.

Desired Skills:

  • Ten (10) years or more of relevant professional experience, including hands-on work in modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Knowledge of Simulation Process Data Management (SPDM) tools.
  • Experience with advanced modeling software such as Siemens Amesim.
  • Hands-on experience with multi-body dynamics and actuator-structure interaction assessments.
  • Exposure to CAD/FEA workflows, thermal-stress analyses, and experimental testing.

Education Requirements:

  • Bachelor’s degree in mechanical or aerospace engineering, or a related discipline from an accredited institution.
  • Advanced degree (MS or PhD) in mechanical or aerospace engineering, or a related discipline strongly preferred but not required.

At V2X, we are deeply committed to both equal employment opportunity, including protection for Veterans and individuals with disabilities, and fostering an inclusive and diverse workplace. We ensure all individuals are treated with fairness, respect, and dignity, recognizing the strength that comes from a workforce rich in diverse experiences, perspectives, and skills. This commitment, aligned with our core Vision and Values of Integrity, Respect, and Responsibility, allows us to leverage differences, encourage innovation, and expand our success in the global marketplace, ultimately enabling us to best serve our clients.

#LI-VH1

Qualifications:

Required Skills:

  • Minimum of six (6) years of relevant professional experience, including hands-on work in modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Expertise in MATLAB, Simulink, and Simscape (including Simscape Fluids) for modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Proficiency in modeling and simulation tools for dynamic systems and thermal-fluid systems.
  • Experience with hardware-in-the-loop testbeds, real-time model deployment, and system testing.
  • Ability to implement systems engineering principles for simulation activities, including multidisciplinary system coupling and actuator integration.
  • Strong technical data analysis, model refinement, and verification skills using experimental and flight test data.
  • Excellent cross-functional communication and teamwork abilities, including mentoring, technical oversight, and delivering traceable verification artifacts.         
  • Familiarity with aerospace and defense standards (e.g., MIL-STD-810/DO-254).
  • US Citizenship with the ability to obtain and maintain a secret clearance.

Desired Skills:

  • Ten (10) years or more of relevant professional experience, including hands-on work in modeling mechanical, thermal fluid, pneumatic, and actuator systems.
  • Knowledge of Simulation Process Data Management (SPDM) tools.
  • Experience with advanced modeling software such as Siemens Amesim.
  • Hands-on experience with multi-body dynamics and actuator-structure interaction assessments.
  • Exposure to CAD/FEA workflows, thermal-stress analyses, and experimental testing.

Education Requirements:

  • Bachelor’s degree in mechanical or aerospace engineering, or a related discipline from an accredited institution.
  • Advanced degree (MS or PhD) in mechanical or aerospace engineering, or a related discipline strongly preferred but not required.

At V2X, we are deeply committed to both equal employment opportunity, including protection for Veterans and individuals with disabilities, and fostering an inclusive and diverse workplace. We ensure all individuals are treated with fairness, respect, and dignity, recognizing the strength that comes from a workforce rich in diverse experiences, perspectives, and skills. This commitment, aligned with our core Vision and Values of Integrity, Respect, and Responsibility, allows us to leverage differences, encourage innovation, and expand our success in the global marketplace, ultimately enabling us to best serve our clients.

#LI-VH1

Education:UNAVAILABLEEmployment Type: FULL_TIME

What V2X employees say

Pay

Benefits

Hours and flexibility

Workplace

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About V2X

Sourced by ZipRecruiter

Industry

Guided missile and space vehicle manufacturing

Company size

10,000+ Employees

Headquarters location

McLean, VA, US

Year founded

1945