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Quantum Developer Salary Jobs in Indiana (NOW HIRING)

Quality Engineer

Franklin, IN ยท On-site

$71K - $95K/yr

Familiarity with ERP systems such as Quantum or similar software. * Knowledge of aircraft component ... At ITS, we offer our employees a competitive salary paid weekly and a comprehensive benefits ...

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Quantum Developer Salary information

What is the average salary of a quantum developer?

The average salary of a quantum developer varies depending on factors such as location, experience, and the employer. In the United States, quantum developers can typically expect to earn between $100,000 and $170,000 per year, with senior or specialized roles reaching higher salaries. Quantum computing is a rapidly growing field, so compensation packages may also include bonuses, stock options, and other incentives. Salaries may differ globally, reflecting demand and expertise in the region.

What is the difference between Quantum Developer Salary vs Quantum Software Engineer?

AspectQuantum DeveloperQuantum Software Engineer
Required CredentialsBachelor's or Master's in Physics, Computer Science, or related field; knowledge of quantum algorithmsBachelor's or Master's in Computer Science, Software Engineering, or related; programming skills in quantum languages
Work EnvironmentResearch labs, tech companies, startups focusing on quantum computingSoftware development teams, research institutions, tech firms working on quantum applications
Employer & Industry UsageQuantum computing companies, tech giants, research institutionsTech companies, software firms, research organizations involved in quantum tech

Both roles involve working with quantum technologies, but Quantum Developers focus more on developing quantum algorithms and applications, while Quantum Software Engineers concentrate on implementing and optimizing quantum software. Salary differences depend on experience, location, and employer, but both roles are highly valued in the growing quantum industry.

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

To thrive as a Quantum Developer, you need a solid background in quantum mechanics, linear algebra, and programming languages such as Python, supported by a relevant degree in physics, computer science, or engineering. Familiarity with quantum computing platforms like IBM Qiskit, Microsoft Quantum Development Kit, or Google Cirq, as well as experience with cloud-based quantum systems, is essential. Problem-solving ability, analytical thinking, and effective collaboration are standout soft skills in this field. These skills and qualities are crucial for innovating and developing practical quantum algorithms that address complex computational challenges.

How does collaboration between Quantum Developers and classical software engineers typically work on project teams?

Quantum Developers often work closely with classical software engineers to integrate quantum algorithms with traditional computing systems. Collaboration usually involves clearly defining problem statements, jointly developing hybrid solutions, and ensuring that quantum components fit seamlessly into existing software architectures. Clear communication and frequent code reviews are essential, as team members may have varying levels of quantum computing knowledge. This multidisciplinary teamwork not only enhances project outcomes but also provides opportunities for skill-sharing and professional growth.
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Postdoctoral Fellow in Quantum Physics

Indiana University Academic Positions

Kokomo, IN โ€ข On-site

Other

Re-posted 29 days ago


Job description

Position Details
Title Postdoctoral Fellow in Quantum Physics Appointment Status Non-Tenure Track Department IU Bloomington Physics Location Bloomington Position Summary
A Postdoctoral Fellow Position in Quantum Optical Physics: Theoretical, Simulation, Modeling for Experimental Design
Title: Postdoctoral Fellow, physics
Appointment Status: Non-tenure track
Department: Department of Physics, Indiana University Bloomington
Location: Bloomington, Indiana, U.S.A.
Position Summary: The Department of Physics at Indiana University Bloomington invites applications for a Postdoctoral Fellow position. This position is designed for a researcher who sits at the intersection of theoretical and experimental physics. The successful candidate will lead the architectural design/modeling/simulation of a groundbreaking experiment: the direct harvesting and extraction of quantum entanglement from the electromagnetic vacuum states. This is a design-phase experiment of the project, which requires simulations, modeling, calculation based on experimentally feasible and practical constrains and conditions to deliver an experiment-ready blueprint and architecture.
Key Research Responsibilities include: (1) Theoretical Modeling: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate the detection of vacuum fluctuations via electro-optic sampling, incorporating realistic parameters for femtosecond few-cycle laser pulses, terahertz bandwidths, and detector electronics. (3) System Architecture: Define the critical engineering requirements (optical pulse duration, terahertz crystal materials in cryogenetic environments, signal-to-noise ratio optimization, entanglement witnesses and verification) necessary to resolve the entangled vacuum variance.
Relevant keywords of this project in experiment includes: electro-optic sampling, terahertz pulses, femtosecond laser pulses, ultrafast optics, carrier-envelope phase/offset, balanced homodyne detection; keywords in theory includes: relativistic quantum information science, quantum field theory, quantum optics, quantum fluctuations of the vacuum, Unruh-DeWitt detector model, entanglement harvesting, entanglement witness.
In this exciting role and project, you will work under the direction of Prof. Chen-Ting Liao and in collaboration with other team members and collaborators. For additional information about the Liao research group, please visit: https://sites.google.com/view/chentingliao/
Department Contact for Questions: Questions regarding the position or application process can be directed to Prof. Chen-Ting Liao (Liao3[at]IU.edu)
Basic Qualifications:
Eligibility according to the project sponsor: (1) U.S. citizenship, or (2) U.S. Permanent Resident/Green Card holder, or (3) in the application process to become a U.S. Permanent Resident/Green Card holder.
Ph.D. in Physics, Chemistry, Quantum Information Science, Optics, Electrical Engineering, or a related field at the time of appointment. (ABD candidates will be considered).
Demonstrated ability to bridge theoretical concepts with physical realizability.
Strong track record of scientific research and peer-reviewed publications.
Excellent written and spoken English communication skills.
High degree of independence and ability to work in a collaborative team environment.
Additional Qualifications:
Theory: Expertise in quantum optics, quantum information science, or quantum field theory.
Simulation: Proficiency in MATLAB or Python for simulation/modeling and data analysis.
Experience with COMSOL Multiphysics and/or Lumerical is a plus.
Experiment: Familiarity with ultrafast optics, terahertz generation, or balanced homodyne detection is highly desirable.
Design: some experience using CAD software (e.g., SolidWorks) for experimental layouts is advantageous.
Required Documents: (1) Curriculum Vitae (including completed degrees, list of publications, research experience, and expertise), (2) Letter of Application (cover letter), (3) contact information of at least two references. Applications should be submitted through the application portal located at: https://indiana.peopleadmin.com/postings/31923
Expected Start Date: Summer 2026. Applications will be reviewed starting on 2/15/26 and will continue until the position is filled.
Salary and Rank: $54-59K/yr, Postdoctoral Fellow. The initial appointment for this position will be for 2 years. Additional 1 year extension will be available based on performance, mutual agreement, and funding availability of the phase II of the project. A competitive benefits package will be offered by the University.

Basic Qualifications
Basic Qualifications:
Eligibility according to the project sponser: (1) U.S. citizenship, or (2) U.S. Permanent Resident/Green Card holder, or (3) in the application process to become a U.S. Permanent Resident/Green Card holder.
Ph.D. in Physics, Chemistry, Quantum Information Science, Optics, Electrical Engineering, or a related field at the time of appointment. (ABD candidates will be considered).
Demonstrated ability to bridge theoretical concepts with physical realizability.
Strong track record of scientific research and peer-reviewed publications.
Excellent written and spoken English communication skills.
High degree of independence and ability to work in a collaborative team environment.
Department Contact for Questions
Questions regarding the position or application process can be directed to Prof. Chen-Ting Liao (Liao3[at]IU.edu)
Additional Qualifications
Additional Qualifications:
Theory: Expertise in quantum optics, quantum information science, or quantum field theory.
Simulation: Proficiency in MATLAB or Python for simulation/modeling and data analysis.
Experience with COMSOL Multiphysics and/or Lumerical is a plus.
Experiment: Familiarity with ultrafast optics, terahertz generation, or balanced homodyne detection is highly desirable.
Design: some experience using CAD software (e.g., SolidWorks) for experimental layouts is advantageous.
Salary and Rank Special Instructions For Best Consideration Date 02/15/2026 Expected Start Date 07/01/2026 Posting Number IU-101463-2026