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Quantum Computer Jobs in Pittsburgh, PA (NOW HIRING)

Linear Algebra Tutor

Pittsburgh, PA ยท Remote

$18 - $40/hr

Emphasizes geometric interpretation of transformations and connects linear algebra to computer graphics, machine learning, and quantum mechanics applications. * Curriculum Awareness & Adaptive ...

Cyber Data Protection/PKI Manager

Pittsburgh, PA ยท On-site

$107K - $145K/yr

Bachelor's degree in Cybersecurity, Information Security, Engineering, Computer Science ... Familiarity with crypto-agility strategies and post-quantum cryptography readiness * Knowledge of ...

Quantum Computer information

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How much do quantum computer jobs pay per hour?

As of Sep 3, 2026, the average hourly pay for quantum computer in Pittsburgh, PA is $20.24, according to ZipRecruiter salary data. Most workers in this role earn between $17.02 and $22.64 per hour, depending on experience, location, and employer.

What is a quantum computer?

A quantum computer is a type of computer that uses the principles of quantum mechanics to process information. Unlike classical computers, which use bits to represent data as 0s or 1s, quantum computers use quantum bits, or qubits, which can exist in multiple states simultaneously. This allows quantum computers to perform certain complex calculations much faster than traditional computers. They are particularly promising for tasks such as cryptography, optimization, and simulating molecular structures. However, quantum computers are still in the experimental stage and are not yet widely available for general use.

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

To thrive as a Quantum Computing Engineer, you need a strong background in quantum mechanics, linear algebra, computer science, and often a graduate degree in physics, computer engineering, or a related field. Familiarity with quantum programming languages (such as Qiskit or Cirq), simulators, and cloud-based quantum platforms is typically required. Critical thinking, problem-solving, and effective collaboration are key soft skills that help drive innovation in this rapidly evolving domain. These skills and qualities are essential for designing, optimizing, and implementing quantum algorithms and systems that push the boundaries of computational capabilities.

What are some common challenges faced by professionals working with quantum computers?

Professionals working with quantum computers often encounter challenges such as error rates in qubits, limited scalability of current hardware, and the need for specialized algorithms. Collaborating closely with physicists, engineers, and computer scientists is essential to troubleshoot issues and push the boundaries of what current systems can achieve. Staying up-to-date with rapid advances in both hardware and software is also key, as the field is constantly evolving and requires a commitment to ongoing learning.

What is the difference between Quantum Computer vs Quantum Software Engineer?

AspectQuantum ComputerQuantum Software Engineer
Required CredentialsPhysics or Computer Science degree, knowledge of quantum mechanicsComputer Science or related degree, programming skills, knowledge of quantum algorithms
Work EnvironmentResearch labs, tech companies developing quantum hardwareSoftware development teams, research institutions, tech companies
Industry UsageHardware development, quantum researchAlgorithm development, software programming for quantum systems
Search & Comparison IntentUnderstanding quantum hardwareDeveloping quantum applications and software

Quantum Computers are physical devices that leverage quantum mechanics to perform computations, often requiring advanced physics knowledge. Quantum Software Engineers design and develop software to run on these devices, focusing on algorithms and programming. While quantum computers are hardware-focused, quantum software engineers work on the applications that utilize quantum hardware, making their roles interconnected but distinct.

Does quantum computing pay well?

Quantum computing professionals, such as researchers and engineers, typically earn competitive salaries due to the specialized skills required, including knowledge of quantum mechanics, programming, and hardware development. Salaries vary by experience, location, and industry, but roles in this field often offer higher-than-average pay compared to other tech positions. Advanced degrees and expertise in quantum algorithms or hardware can further increase earning potential.

Is it hard to get a job in quantum computing?

Getting a job in quantum computing can be competitive due to the specialized skills required, such as knowledge of quantum algorithms, programming languages like Qiskit or Cirq, and a strong background in physics or computer science. Candidates often need advanced degrees and experience with quantum hardware or simulation tools, making entry-level positions less common and requiring significant expertise.

What job categories do people searching Quantum Computer jobs in Pittsburgh, PA look for?

The top searched job categories for Quantum Computer jobs in Pittsburgh, PA are:

Infographic showing various Quantum Computer job openings in Pittsburgh, PA as of August 2026, with employment types broken down into 7% Internship, 75% Full Time, and 18% Part Time. Highlights an 90% In-person, and 10% Remote job distribution, with an average salary of $42,106 per year, or $20.2 per hour.

Professor & Department Chair - Electrical and Computer Engineering

University of Pittsburgh

Pittsburgh, PA โ€ข On-site

Full-time

Re-posted 17 days ago


Job description

The Department of Electrical and Computer Engineering in the Swanson School of Engineering at the University of Pittsburgh invites applications for the position of Department Chair and Professor. We seek a dynamic and accomplished research scholar and educator with exceptional leadership and interpersonal skills; a transformative vision for the future of engineering in general and electrical and computer engineering in particular; and a plan to realize that vision.
Applicants for the position must possess a PhD in electrical and/or computer engineering, or a closely related field and be qualified for appointment as a tenured, full professor in the Swanson School of Engineering. The successful candidate will bring a distinguished record of sponsored research, impactful publications, and excellence in teaching and mentoring, along with strong leadership skills and a clear, forward-looking vision for the department. As the primary bridge across faculty, staff, students, and university leadership, the chair is responsible for setting measurable goals and overseeing all education (undergraduate, graduate, and postdoctoral), research, service, and administrative activities of the department. Administrative responsibilities include budget management; strategic planning; facilities oversight; and staff supervision. The successful candidate will also demonstrate interpersonal competencies essential to this role: active listening, inclusive decision-making, and the ability to align departmental priorities with the Swanson School's strategic plan. We are especially seeking a leader who can leverage synergies across Pitt, peer institutions, and industry to build strong partnerships - including major centers, initiatives, and industrial collaborations - while also cultivating donor relationships, engaging communities, and strengthening external ties that advance the department's visibility and impact.
About the ECE Department: One of the oldest Electrical and Computer Engineering (ECE) departments in the country, the ECE department at Pitt is home to 37 full-time faculty members, 400 undergraduate students, and 160 graduate students. The department provides access to world-class research infrastructure including the Nanoscale Fabrication and Characterization Facility (NFCF), a cleanroom user facility in Benedum Hall offering researchers access to state-of-the-art e-beam lithography, deposition, and etching tools alongside advanced electron microscopy; the newly-commissioned Western Pennsylvania Quantum Information Core (WPQIP) facility with cutting edge equipment for fabrication and characterization of quantum devices and materials; and the Energy Innovation Center (EIC), which houses several Pitt laboratories and startup incubator space for industry-engaged research. The ECE faculty also benefit from the University's Center for Research Computing and Data (CRCD), which operates a large multi-thousand-core cluster with GPU co-processors and PhD-level consulting staff. Pitt ECE also leads the NSF Center for Space, High-performance, and Resilient Computing (SHREC), an Industry-University Cooperative Research Center advancing mission-critical computing for space science, defense, and resilient systems. Finally, the department's deep ties to the University of Pittsburgh Medical Center (UPMC), one of the nation's largest academic medical centers, creates exceptional opportunities for collaborative, translational research bridging engineering and the biomedical sciences.
Applicants should submit:
  • A brief Cover Letter that includes a Statement of Interest
  • Curriculum Vita
  • Research Statement
  • Teaching Statement
  • Statement of Plans/Vision specific to Pitt-ECE for strengthening the department's competitiveness, impact, and visibility (maximum of 2 pages)
  • Contact information for at least three professional references.

Applications will be reviewed on an ongoing basis beginning August 15, 2026 until the position has been filled. Early submission is highly encouraged.
Please e-mail Dr. Lisa Maillart at maillart@pitt.edu in confidence for any questions or recommendations that you might have for potential candidates.