1

Quantum Physics Jobs (NOW HIRING)

The Role You will work with both quantum systems we operate: the superconducting hardware in our ... Physics-level investigation of noise sources across the systems we operate, with statistical ...

Based in Princeton, NJ our founding physics team has decades of combined research experience at leading academic and industry labs including Princeton, Harvard, Yale, MIT and Google Quantum. Our ...

Based in Princeton, NJ our founding physics team has decades of combined research experience at leading academic and industry labs including Princeton, Harvard, Yale, MIT and Google Quantum. Our ...

PhD in Physics, Applied Physics, Electrical Engineering, or a closely related field * Hands-on experimental experience with one or more quantum platforms, including solid-state spin defects ...

PhD in Physics, Applied Physics, Electrical Engineering, or a closely related field * Hands-on experimental experience with one or more quantum platforms, including solid-state spin defects ...

Showing results 41-60

Quantum Physics information

See salary details

$5

$20

$25

How much do quantum physics jobs pay per hour?

As of Sep 13, 2026, the average hourly pay for quantum physics in the United States is $20.06, according to ZipRecruiter salary data. Most workers in this role earn between $12.50 and $25.48 per hour, depending on experience, location, and employer.

What do quantum physicists do?

Quantum physicists study and explore the fundamental principles governing matter and energy at the smallest scales, such as atoms and subatomic particles. Their work involves conducting experiments, developing theoretical models, and using advanced mathematics to understand phenomena like superposition, entanglement, and quantum tunneling. Quantum physicists often work in academic research, technology development (like quantum computing), or industry labs, contributing to innovations in fields such as electronics, cryptography, and material science.

What are the key skills and qualifications needed to thrive as a quantum physicist?

To thrive as a Quantum Physicist, you need an advanced understanding of quantum mechanics, mathematics, and physical sciences, typically supported by a PhD in physics or a related field. Proficiency in computational modeling, laboratory equipment, and programming languages like Python or MATLAB is often required. Critical thinking, problem-solving, and effective communication are essential soft skills for collaborating on complex research projects. These skills and qualities are crucial for advancing scientific discovery and translating theoretical concepts into practical applications.

What are some common challenges faced by quantum physicists when working on experimental research projects?

Quantum physicists often encounter unique challenges in experimental research, such as dealing with extremely sensitive equipment that can be affected by minute environmental changes like temperature or electromagnetic interference. Collaborating with interdisciplinary teams—including engineers and computer scientists—is crucial for overcoming technical hurdles and designing robust experiments. Additionally, because quantum phenomena are not always intuitive, clear communication and extensive documentation are necessary to ensure that results are reproducible and findings are accurately interpreted. These challenges make teamwork, adaptability, and strong problem-solving skills essential in this field.

What is the difference between Quantum Physics vs Quantum Mechanics?

AspectQuantum PhysicsQuantum Mechanics
CredentialsPhysics degrees, advanced certificationsPhysics degrees, specialized training
Work EnvironmentResearch labs, universities, industryResearch labs, academic settings
Industry UsageFundamental research, technology developmentTheoretical modeling, experimental analysis

Quantum Physics is a broad field encompassing the study of quantum phenomena, while Quantum Mechanics is a specific theoretical framework within Quantum Physics that describes the behavior of particles at the quantum level. Both roles often require similar credentials and work environments, but Quantum Physics covers a wider scope including experimental and applied research, whereas Quantum Mechanics focuses on the mathematical modeling of quantum systems.

Are there any jobs in quantum physics?

Yes, careers in quantum physics include roles such as research scientists, quantum engineers, and data analysts, often requiring advanced degrees in physics or related fields. These jobs are typically found in academia, government labs, and technology companies working on quantum computing, cryptography, and advanced materials.

What is the job of a quantum physicist?

A quantum physicist researches and develops theories about the behavior of matter and energy at the atomic and subatomic levels. They often work in laboratories or academic settings, using advanced mathematical models and experimental tools to explore quantum phenomena and contribute to fields like quantum computing, cryptography, and nanotechnology.

What jobs can you get with quantum physics?

Quantum physics graduates and professionals can pursue roles such as quantum research scientist, quantum engineer, or quantum software developer. These jobs often require strong analytical skills, knowledge of quantum mechanics, and experience with programming languages like Python or C++, as well as access to specialized laboratory or computational environments.
More about Quantum Physics jobs

What cities are hiring for Quantum Physics jobs?

Cities with the most Quantum Physics job openings:

What states have the most Quantum Physics jobs?

States with the most job openings for Quantum Physics jobs include:

Infographic showing various Quantum Physics job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 73% Full Time, 23% Part Time, and 2% Contract. Highlights an 74% Physical, 2% Hybrid, and 24% Remote job distribution, with an average salary of $41,731 per year, or $20.1 per hour.

Flatiron Research Fellow - Software, Center for Computational Quantum Physics

NY • On-site

$95K/yr

Full-time

Posted 17 days ago


Job description

Description
POSITION SUMMARY
Directed by Antoine Georges and co-directed by Andrew Millis, the Center for Computational Quantum Physics (CCQ) is a leading international center for the study of equilibrium and non-equilibrium many-body quantum systems, with applications to condensed matter physics, materials science, quantum materials, quantum emulators and related fields. The development of the concepts, algorithms and code libraries needed to advance the field is fundamental to the work of the center. Research projects currently pursued at CCQ cover a broad range of methods and interest, see: https://www.simonsfoundation.org/flatiron/center-for-computational-quantum-physics/
CCQ currently comprises more than 40 scientists at career stages from recent Ph.D.s through senior scientists, as well as support staff, visiting scientists, and affiliated graduate students and interns. The institute has vigorous visitor and workshop programs and strong interactions with scientists from neighboring institutions.
CCQ has established formal partnerships with the New York City-Max Planck Center for Non-Equilibrium Quantum Phenomena, the CIFAR Quantum Materials program, the QUAST collaboration, the CEA-France, and the Collège de France and collaborates extensively with scientists at a range of institutions in the US and internationally. Candidates interested in collaborative work or joint positions are encouraged to discuss possibilities with CCQ staff.
A core effort at CCQ is the development of open-source software libraries with the latest algorithms and tools for advancing scientific research at CCQ and across the wider scientific community. Major software efforts at CCQ include the TRIQS library for quantum embedding, the AFQMC library for auxiliary-field quantum Monte Carlo and the ITensor library for tensor network algorithms.
The Flatiron Research Fellow-Software position is at a postdoctoral level and has as a primary focus the design and implementation of software relevant to research at CCQ. Fellows primarily develop and expand one of the major code efforts at CCQ, devise new or improved algorithms, and advance fundamental research through the perspective of software design and optimization. Applicants typically have backgrounds in one or more of the following areas: theoretical condensed matter physics, computational physics, materials science, theoretical or computational chemistry, applied mathematics, and computer science. Fellows in this highly collaborative position are expected to disseminate their results through a combination of open-source software development, participation in conferences, workshops and seminars, some publications in the scientific literature, and through mentorship of undergraduate and graduate students as appropriate. CCQ also anticipates making several Flatiron Research Fellow appointments; these positions are for scientists who work on developing new concepts, algorithms, and codes needed to understand the many-particle quantum problem, and on the physical and chemical properties of systems requiring this new understanding.
The initial appointment is generally for two years, with the possibility of renewal for a third year, contingent on performance. Flatiron Software Fellows may be eligible for subsidized housing within walking distance of the CCQ. The anticipated start date is between end of August 2027 through early November 2027.
Responsibilities include but are not limited to:
  • Developing, implementing, maintaining and supporting scientific software, with a focus on contributing to one or more of the existing software efforts at CCQ
  • Performing theoretical and computational research
  • Assisting in the organization of CCQ and Flatiron-wide collaborative activities including seminars, workshops and meetings
  • Actively participating in the preparation of manuscripts for publication and of presentations at conferences
  • Assisting in student mentorship
  • Sharing expertise and providing training and guidance to CCQ staff and visitors as needed.

This position will be based, and have a principal office or workspace, at the foundation's offices in New York City.
Qualifications
MINIMUM QUALIFICATIONS
Education
  • Ph.D. in relevant field

Related Skills & Other Requirements
  • Demonstrated expertise in software and algorithm development, computational methods, data analysis, modeling, machine learning, high-performance and parallel computing, or scientific simulation;
  • Demonstrated experience with modern programming languages such as C++, Python or Julia
  • Demonstrated ability to perform research in condensed matter physics, chemistry, applied mathematics, computer science, or a related field;
  • Effective oral and written communication skills;
  • Ability to work well independently as well as in a collaborative team environment.

Compensation and Benefits
  • The full-time annual compensation for this position is $95,000.
  • In addition to competitive salaries, the Simons Foundation provides employees with an outstanding benefits package.

Application Instructions
REQUIRED APPLICATION MATERIALS
  • Curriculum vitae with publication list
  • Statement of not more than four pages describing software development experience, software development skills, and algorithm development. Applicants should discuss how these activities connect with and support scientific research topics. The statement may also discuss joint projects with other research institutions.
  • Three (3) letters of recommendation

Deadline
Applications for available positions that begin in 2027 will be reviewed beginning in Fall 2026 and considered on a rolling basis until the positions are filled. For full consideration, application by October 9, 2026 is recommended.