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Phd Quantum Computing Jobs in Baltimore, MD (NOW HIRING)

Professor & Director

College Park, MD · On-site

$58K - $254K/yr

... Quantum Computing. More information can be found at The IPST Director will report to the Dean of the College. Minimum Qualifications: PhD required. The successful candidate will be a tenured full ...

Phd Quantum Computing information

What is a PhD quantum computing professional?

PhD quantum computing professionals are experts who have completed a doctoral degree focused on the theory, development, and application of quantum computing technologies. They conduct advanced research in areas like quantum algorithms, quantum hardware, and quantum information theory. These professionals often work in academia, research institutions, or industry roles to push the boundaries of what quantum computers can achieve, solving problems that are intractable for classical computers. Their work involves both theoretical research and practical implementation, often collaborating with interdisciplinary teams.

What are some common interdisciplinary collaborations for a PhD in quantum computing?

PhD candidates in Quantum Computing frequently collaborate with experts from physics, electrical engineering, mathematics, and computer science. These collaborations often involve joint research projects, co-authored publications, and participation in interdisciplinary seminars or lab meetings. Such teamwork not only enriches research perspectives but also helps candidates develop a well-rounded skill set, which is highly valued in both academic and industry settings. Engaging with colleagues from diverse backgrounds can also lead to innovative approaches to solving complex quantum problems.

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

To thrive as a PhD in Quantum Computing, you need deep knowledge of quantum mechanics, advanced mathematics, and computer science, along with a doctoral degree in a relevant field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware platforms, and experience with simulation tools are typically expected. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate across interdisciplinary teams and share complex concepts. These skills are vital for advancing research, developing novel algorithms, and contributing to the rapidly evolving field of quantum technologies.

What is the difference between Phd Quantum Computing vs Quantum Software Engineer?

AspectPhd Quantum ComputingQuantum Software Engineer
Required CredentialsPhD in Physics, Computer Science, or related fieldBachelor's or Master's in Computer Science, Physics, or related field; some roles prefer PhD
Work EnvironmentResearch labs, academia, industry R&DTech companies, startups, industry R&D teams
Industry UsageResearch, development, academiaProduct development, software engineering, application deployment
Common Search/ComparisonYesYes

While both roles involve quantum technologies, a Phd Quantum Computing focuses on research, theory, and developing new quantum algorithms, often in academic or industrial R&D settings. In contrast, a Quantum Software Engineer applies quantum programming skills to develop practical applications and software solutions in industry. The roles overlap in technical knowledge but differ in focus and work environment.

What can you do with a PhD in quantum computing?

A PhD in quantum computing prepares individuals for research and development roles in academia, industry, or government labs, focusing on quantum algorithms, hardware, and software development. Graduates often work as quantum researchers, software engineers, or data scientists, utilizing skills in programming languages like Python and tools such as quantum simulators and hardware platforms.

What are popular job titles related to Phd Quantum Computing jobs in Baltimore, MD?

For Phd Quantum Computing jobs in Baltimore, MD, the most frequently searched job titles are:

What job categories do people searching Phd Quantum Computing jobs in Baltimore, MD look for?

The top searched job categories for Phd Quantum Computing jobs in Baltimore, MD are:

What cities near Baltimore, MD are hiring for Phd Quantum Computing jobs?

Cities near Baltimore, MD with the most Phd Quantum Computing job openings:

Infographic showing various Phd Quantum Computing job openings in Baltimore, MD as of August 2026, with employment types broken down into 86% Full Time, 12% Part Time, and 2% Contract. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution.

Postdoctoral Position in the Quantum Thermodynamics Group

Baltimore, MD • On-site

University of Maryland Baltimore County
Colleges, Universities, and Professional Schools • 1 - 5K employees

$48K - $66K/yr

Full-time

Re-posted 3 days ago


Job description

Description
The Quantum Thermodynamics Group in the Department of Physics at UMBC invites applications for a Postdoctoral Research Associate to work under the mentorship of Dr. Sebastian Deffner. This postdoctoral position will be funded by a grant from the U.S. Department of Energy.
The postdoc will conduct theoretical research on quantum information scrambling and its relevance to molecular memories. We are witnessing a global race to develop the first fault-tolerant quantum computers that can handle applications at realistic scales. To date, several architectures for quantum hardware have been developed that all have their strengths and weaknesses. For instance, ion trap based computers have a high degree of controllability and are only weakly susceptible to noise, yet with only tens of qubits they are comparatively small. Superconducting technologies have already achieved thousands of qubits, but their chip-design is prone to noise. Another potential platform for quantum computing is based on molecular systems. Generally, quantum computing relies on the precise control of quantum information in complex systems, yet the fundamental processes that govern how information spreads, scrambles, or becomes inaccessible remain poorly understood. In particular, molecules offer a tunable and naturally complex platform for studying these phenomena, making them ideal systems for uncovering the principles behind quantum information flow and control. A major open question is how chaotic dispersion of quantum information emerges in molecular systems and how this transition relates to the loss or protection of quantum information. Without a detailed understanding of these processes, it remains difficult to design quantum systems that are both powerful and secure. The postdoctoral research will contribute to uncovering the conditions under which quantum information becomes scrambled in molecules, and in determining the minimal complexity needed for these systems to serve as secure quantum memories or components in quantum computing.
The start date is expected to at the beginning of Spring Semester 2026, i.e., February 2026. The initial appointment is for one year, but renewal for up to 2 years is anticipated, subject to performance and funding. Candidates should have a PhD in Theoretical Physics, and a proven track record in quantum chaos, quantum information scrambling, open quantum dynamics, and/or quantum decoherence. The Quantum Thermodynamics Group is highly active, with 3-4 graduate students and 4-5 undergraduate researchers at any given time. Candidates with an interest in teaching and mentoring will be provided with opportunities to further their experience where feasible.
UMBC and the Department of Physics are dedicated to creating an inclusive, collegial environment where all faculty members can achieve excellence. Thus, candidates from diverse backgrounds, including women and under-represented minorities, are particularly encouraged to apply. Interest and experience in working with a diverse student and faculty population is valued. The Department of Physics has an active Graduate Women in Physics group and an Undergraduate Women and Gender Minorities in Physics group, and has ties with the nationally acclaimed Meyerhoff Scholars Program. UMBC is an affirmative action/equal opportunity employer.
Qualifications
Candidates should have a PhD in Theoretical Physics, and a proven track record in quantum chaos, quantum information scrambling, open quantum dynamics, and/or quantum decoherence.
Application Instructions
Interested candidates should upload a cover letter, CV, research statement (one page) , professional development plan (one page) and the names and contact information for at least two references to the Interfolio website at https://apply.interfolio.com/172719.
Applications submitted by November 01, 2025 will receive full consideration.