1

Computational Solid State Physics Jobs (NOW HIRING)

Be Seen First

Candidates should have a background in electrical engineering, physics, applied physics, pulsed power applications of solid-state switches. The Deputy Program Manager will be required to manage and ...

New

Sales Account Director

Santa Clara, CA · On-site

$163K - $264K/yr

Bachelor's Degree from an Accredited College and or University in Engineering, Materials Sciences, Solid State Physics or Related Discipline * 10- 15 Years of Semiconductor Experience * 10 Years of ...

next page

Showing results 1-20

Computational Solid State Physics information

See salary details

$142.5K

$168.8K

$192.5K

How much do computational solid state physics jobs pay per year?

As of May 29, 2026, the average yearly pay for computational solid state physics in the United States is $168,844.00, according to ZipRecruiter salary data. Most workers in this role earn between $155,500.00 and $182,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Computational Solid State Physicist, and why are they important?

To thrive as a Computational Solid State Physicist, you need a deep understanding of quantum mechanics, solid state theory, and numerical methods, typically supported by an advanced degree (MSc or PhD) in physics or a related field. Familiarity with programming languages (such as Python, Fortran, or C++), high-performance computing, and simulation packages like VASP or Quantum ESPRESSO is essential. Strong problem-solving skills, attention to detail, and effective communication help in interpreting results and collaborating with multidisciplinary teams. These competencies enable accurate modeling of materials and contribute to advancements in electronics, energy, and materials science.

What are some common challenges faced by professionals in computational solid state physics, and how can they be addressed?

Professionals in computational solid state physics often encounter challenges such as managing large datasets, optimizing simulation code for high-performance computing environments, and ensuring the accuracy of theoretical models. Collaborating closely with experimental physicists and materials scientists can help validate computational results and refine models. Additionally, staying current with advances in computational methods and software, as well as participating in interdisciplinary research teams, are crucial strategies for overcoming these challenges and advancing in the field.

What is computational solid state physics?

Computational solid state physics is a branch of physics that uses computer simulations and numerical methods to study the properties and behaviors of solid materials, such as crystals and metals. Researchers in this field use mathematical models and algorithms to understand electronic structure, magnetism, conductivity, and other physical phenomena at the atomic and molecular levels. This approach allows scientists to predict material properties and design new materials with specific characteristics, often complementing experimental work. The field is critical for advancements in electronics, nanotechnology, and materials science.

What jobs can you get with a computational physics degree?

A computational solid state physics degree prepares individuals for roles such as research scientist, computational physicist, materials scientist, or data analyst in industries like electronics, semiconductors, and materials development. These positions often require skills in programming, simulation software, and data analysis, and may involve working in research labs, industry, or academia.

What is the difference between Computational Solid State Physics vs Materials Scientist?

AspectComputational Solid State PhysicsMaterials Scientist
Required CredentialsPhysics or related degree, often with computational skillsMaterials science degree, often with experimental and computational skills
Work EnvironmentResearch labs, universities, industry focusing on simulationsLaboratories, industry, academia with both experimental and computational work
Employer & Industry UsageResearch institutions, tech companies, academiaManufacturing, R&D, academia, industry

Computational Solid State Physics primarily focuses on simulating and understanding the properties of solid materials using computational methods. In contrast, Materials Scientists often combine experimental and computational techniques to develop and improve materials for various applications. While both roles require a strong background in physics or materials science, Computational Solid State Physics emphasizes theoretical modeling, whereas Materials Scientists may work more broadly across research and development projects.

Infographic showing various Computational Solid State Physics job openings in the United States as of May 2026, with employment types broken down into 83% Full Time, 3% Part Time, 6% Temporary, 5% Contract, and 3% Nights. Highlights an 100% Physical job distribution, with an average salary of $168,844 per year, or $81.2 per hour.
Deputy Program Manager for Solid State semiconductors and systems

Deputy Program Manager for Solid State semiconductors and systems

I Pulse Group

Albuquerque, NM • On-site

$200K - $325K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted yesterday

Be Seen First

After you apply to this job, you can share why you’re interested to jump to the top of the candidate list.


Job description

Deputy Program Manager Solid State semiconductors and systems

I-Pulse Albuquerque LLC

We are seeking an innovative Deputy Program Manager with a focus on commercial and advanced solid-state, pulsed-power applications. Candidates should have a background in electrical engineering, physics, applied physics, pulsed power applications of solid-state switches. The Deputy Program Manager will be required to manage and provide oversight of solid-state, pulsed-power switch designs and related tasks. The Deputy Program Manager will lead a team managing the effort from concept to system level device completion as well as semi-conductor fabrication. In addition, the candidate must have experience with 40-kV, solid-state switches and must have transitioned technology into commercial products.

Who We Are:

I-Pulse Inc. is dedicated to empowering humanity through revolutionary pulsed-power solutions that address critical challenges. Our technology drives transformative, sustainable applications in energy-intensive industries such as mining, geothermal drilling, and other advanced fields, aiming to reduce global industrial power consumption. Our vision is to lead technological advancements that enhance everyday life and promote sustainable growth.

I-Pulse Albuquerque is investing in R&D to pioneer new technologies and establish industry benchmarks in pulsed-power and electrical systems. By opening an office in Albuquerque, we are advancing our commitment to commercializing pulsed power. We seek creative individuals who can rapidly transform concepts into hardware and integrate them into commercial applications.

Responsibilities Include:

  • Collaborating, leading, and managing scientists, engineers, technicians, and project task managers to develop advanced, solid-state switch devices and switches for pulsed-power systems.
  • Experience using simulation tools (e.g., TCAD, COMSOL, CST, SPICE, Screamer) for multi-physics simulations and modeling of solid-state switch topologies, designs, and reliability.
  • Designing high-temperature, long-lifetime, solid-state switches for high-reliability pulsed-power systems, both single-shot and long-lifetime, rep-rate systems.
  • Developing high-temperature electronics and assemblies
  • Presenting work at design reviews, managing schedules, and tracking project costs.
  • Conducting theoretical and experimental analysis.
  • Manage fabrication at the wafer level and collaboration with semiconductor device teams at SiC or silicon semiconductor fabrication facilities
  • Documenting results, failures, and corrective actions.
  • Writing technical proposals.

Required Qualifications:

  • Master’s degree in physics or higher in electrical engineering or a related field or seven to ten years of relevant work experience. 
  • 25+ years of experience in pulsed-power or solid-state switch projects.
  • Management of a $50+M business unit.
  • Experience in research, development, or prototyping environments.
  • Experience writing proposals for competitive solicitations.

Desired Qualifications:

  • Past security clearances
  • PMP (Project Management Professional) Certification

·         Semiconductor device reliability

·         Radiation‐hardened electronics

·         Solid‐state power systems

·         High‐density electronics integration

 

Equal Opportunity Employer:

I-Pulse Albuquerque, LLC is an Equal Opportunity/Affirmative Action Employer. All qualified applicants will be considered without regard to race, color, religion, creed, sex, sexual orientation, gender identity, national origin, disability, or protected Veteran status. We offer competitive salaries and comprehensive benefits, including medical, dental, vision, 401(k), and a generous PTO plan.

Company Description

I-Pulse Inc. is dedicated to empowering humanity through revolutionary pulsed-power solutions that address critical challenges. Our technology drives transformative, sustainable applications in energy-intensive industries such as mining, geothermal drilling, and other advanced fields, aiming to reduce global industrial power consumption. Our vision is to lead technological advancements that enhance everyday life and promote sustainable growth.
I-Pulse Albuquerque is investing in R&D to pioneer new technologies and establish industry benchmarks in pulsed-power and electrical systems. By opening an office in Albuquerque, we are advancing our commitment to commercializing pulsed power. We seek creative individuals who can rapidly transform concepts into hardware and integrate them into commercial applications.