1

Applied Scientist Quantum Jobs (NOW HIRING)

... Scientist will work on the modeling, simulation, and architectural development of quantum and ... D. in Physics, Applied Physics, Electrical Engineering, or a closely related discipline. Technical ...

PhD in Quantum Physics, Quantum Information Science, Applied Physics, Mathematics, Computer Science, or a closely related discipline. * 5+ years of experience in quantum sensing, quantum networking ...

PhD in Quantum Physics, Quantum Information Science, Applied Physics, Mathematics, Computer Science, or a closely related discipline. * 5+ years of experience in quantum sensing, quantum networking ...

Showing results 21-40

Applied Scientist Quantum information

What is an applied scientist quantum?

Applied Scientist Quantum jobs involve conducting research and developing practical applications based on quantum technologies, such as quantum computing, quantum communication, or quantum sensing. Professionals in this role use their knowledge of physics, mathematics, and computer science to solve complex problems and create innovative solutions leveraging quantum mechanics. Their work often includes designing algorithms, running experiments, analyzing data, and collaborating with multidisciplinary teams to advance the field of quantum technologies.

How do applied scientists quantum typically collaborate with hardware and software engineering teams?

Applied Scientists in Quantum frequently work alongside both hardware and software engineering teams to bridge the gap between theoretical research and practical implementation. They often design quantum algorithms or models and then collaborate with hardware engineers to ensure these solutions are feasible on current or emerging quantum devices. Additionally, they work closely with software engineers to develop and optimize code that runs efficiently on quantum platforms. This multidisciplinary environment encourages regular communication, problem-solving, and iterative development across teams.

What are the key skills and qualifications needed to thrive as an applied scientist quantum, and why are they important?

To thrive as an Applied Scientist in Quantum, you need a deep understanding of quantum physics, advanced mathematics, and expertise in fields like quantum computing or quantum information, usually supported by a PhD or equivalent research experience. Familiarity with quantum programming languages (such as Qiskit or Cirq), simulation tools, and experience with high-performance computing systems are typically required. Strong problem-solving abilities, collaboration skills, and effective communication help translate complex concepts into practical solutions and foster teamwork. These skills are essential for advancing quantum technologies and bridging theoretical research with real-world applications.

What is the difference between Applied Scientist Quantum vs Data Scientist?

AspectApplied Scientist QuantumData Scientist
Required CredentialsAdvanced degrees in physics, quantum computing, or related fieldsDegrees in statistics, computer science, or related fields
Work EnvironmentResearch labs, tech companies focusing on quantum computingBusiness, tech companies, analytics teams
Industry UsageQuantum technology, research institutions, specialized R&DData analysis, machine learning, business insights

Applied Scientist Quantum roles focus on developing and applying quantum computing techniques, requiring expertise in physics and quantum algorithms. Data Scientists analyze large datasets to extract insights, using statistical and machine learning methods. While both roles involve data and research, Applied Scientist Quantum emphasizes quantum technologies, whereas Data Scientists focus on traditional data analysis.

What are popular job titles related to Applied Scientist Quantum jobs?

For Applied Scientist Quantum jobs, the most frequently searched job titles are:

Infographic showing various Applied Scientist Quantum job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 75% Full Time, 22% Part Time, and 1% Contract. Highlights an 88% Physical, 2% Hybrid, and 10% Remote job distribution.

Quantum Computing Research Scientist - Quantum Error Correction - Vice President

Manhattan, NY • On-site

JPMorgan Chase & Co.
Finance and Insurance • 10K+ employees

Other

Re-posted 9 days ago


JPMorgan Chase & Co. rating

7.9

Company rating: 7.9 out of 10

Based on 500 frontline employees who took The Breakroom Quiz


Job description

Are you looking for an exciting opportunity to join a dynamic and growing team in a fast paced and challenging area? This is a unique opportunity for you to work with Global Technology Applied Research (GTAR) center at JPMorganChase. The goal of GTAR is to design and conduct research across multiple frontier technologies, in order to enable novel discoveries and inventions, and to inform and develop next-generation solutions for the firm’s clients and businesses.

As a Senior Associate quantum computing researcher within The Global Technology Applied Research (GTAR), you will develop, investigate, and optimize (both analytically and numerically) protocols for universal fault-tolerant quantum computation, implement these protocols for experimental validation, and use these protocols to execute quantum algorithms fault-tolerantly on quantum computing hardware.

Job responsibilities
  • Develop circuit gadgets and protocols for universal fault-tolerant quantum computation (FTQC)

  • Numerically investigate and optimize fault-tolerant gadgets for real-world execution on quantum computing hardware

  • Implement and experimentally validate protocols for universal FTQC on quantum computing hardware

  • Document analytical, numerical, and experimental results in scientific papers

  • Implement, maintain, and manage a codebase that colleagues without expertise in quantum error correction (QEC) or fault-tolerance can use to run quantum algorithms fault-tolerantly on quantum computing hardware

Required qualifications, capabilities, and skills
  • Ph.D. degree in computer science, physics, math, engineering, or related fields, or equivalent experience
  • Competency in the basics of qubit-based stabilizer QEC: stabilizer and subsystem codes; CSS codes; parity check matrices; logical and gauge operators; thresholds and pseudo-thresholds; Clifford and non-Clifford gates; Shor, Steane, and Knill QEC; code distance and effective (circuit) distance
  • Experience with analytical and numerical circuit-level investigation of QEC and FTQC: constructing circuits for QEC cycles, state preparation, and logical operations; specifying noise models; building detector error models; running numerical simulations; decoding; computing logical error rates
  • Experience building quantum circuits in a major software framework such as Cirq, Qiskit, or Pytket
  • Fluency in at least one of: Python, Julia, C++, Rust
  • Strong oral and written communication skills, strong scientific publication record
Preferred qualifications, capabilities, and skills
  • Experience developing a successful research program focused on the development of protocols for universal FTQC
  • Experience designing fault-tolerant gadgets for state preparation and logical gates
  • Understanding of magic-state distillation and cultivation protocols
  • Understanding of generalized code surgery, code adapters and extractors
  • Understanding of concatenated code constructions and code families
  • Understanding of dynamical codes
  • Understanding of ZX calculus and fault-tolerant rewrites and experience with circuit-level quantum compilation
#J-18808-Ljbffr

What JPMorgan Chase & Co. employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom