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Quantum Computing Jobs in New York (NOW HIRING)

Technology, R&D Reports to: CTO About Us Quantum Computing Inc. (QCi) (Nasdaq: QUBT) is an innovative, integrated photonics company that provides accessible and affordable quantum machines to the ...

AI is rapidly emerging as a critical technology for advancing quantum computing, and this role sits their intersection, requiring the ability to translate advances in AI and quantum research into ...

FPGA Design Engineer

Hoboken, NJ · On-site +1

$119K - $147K/yr

Quantum Computing Inc. (QCi) (Nasdaq: QUBT) is an innovative, integrated photonics company that provides accessible and affordable quantum machines to the world today. QCi products are designed to ...

Quantum Ion Trap Integrator

New York, NY · On-site

$98K - $176K/yr

Lead semiconductor integration efforts for ion-trap quantum computing platforms, with focus on BEOL CMOS integration, photonics integration, and advanced packaging. * Drive yield-learning and ...

Quantum Developer Relations Lead

New York, NY · On-site

$64.50 - $84.50/hr

Exploring what's next in computing and shaping the technologies the world will rely on tomorrow. From advancing AI and hybrid cloud to pioneering practical quantum computing, we anticipate challenges ...

This role is focused on integrating the semiconductor building blocks required for scalable ion-trap-based quantum computing platforms, while bridging advanced quantum device requirements with ...

Showing results 21-40

Quantum Computing information

See New York salary details

$30.1K

$143.5K

$234.5K

How much do quantum computing jobs pay per year?

As of Sep 11, 2026, the average yearly pay for quantum computing in New York is $143,483.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,021.00 and $174,923.00 per year, depending on experience, location, and employer.

What is quantum computing?

A Quantum Computing job involves researching, developing, and applying quantum mechanics principles to create advanced computing systems. Professionals in this field work on algorithms, hardware, and software that leverage quantum bits (qubits) to solve complex problems faster than classical computers. Roles include quantum software engineer, quantum physicist, and research scientist, often requiring expertise in physics, mathematics, and computer science. These jobs are typically found in academia, tech companies, and government research labs focused on advancing quantum technology.

What does someone working in quantum computing do?

Professionals in quantum computing spend their days developing and testing quantum algorithms, collaborating with physicists and engineers on hardware advancements, and running experiments on quantum simulators or actual devices. They often work in interdisciplinary teams and engage in regular code reviews, technical discussions, and research collaborations. Keeping up with the latest scientific literature and participating in internal or external seminars is also common. This dynamic workflow ensures that team members stay informed about cutting-edge developments and continuously contribute to innovative projects.

What are the key skills and qualifications needed to thrive in quantum computing?

To thrive in quantum computing, you typically need a strong background in physics, mathematics, and computer science, often supported by a graduate degree in a relevant field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware platforms, and experience with simulation tools are frequently required. Analytical thinking, problem-solving, and the ability to communicate complex concepts clearly are valuable soft skills. These competencies are essential for developing and implementing quantum algorithms, collaborating on interdisciplinary teams, and advancing this rapidly evolving field.

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 to improve their chances.

Is quantum computing a good career?

Quantum computing is a rapidly growing field with roles such as quantum software engineers, researchers, and hardware developers. It requires strong backgrounds in physics, computer science, and mathematics, along with skills in programming languages like Python and familiarity with quantum algorithms. Careers in this area can be highly specialized and competitive but offer opportunities in academia, industry, and government research labs.

Is quantum computing well paid?

Quantum computing professionals, such as researchers and engineers, typically earn high salaries due to the specialized skills and advanced knowledge required in the field. Salaries can vary based on experience, education, and location, but generally, roles in quantum computing are well compensated compared to many other tech positions. Advanced degrees and expertise in quantum algorithms, hardware, or software can further increase earning potential.

What are the most commonly searched types of Quantum Computing jobs in New York?

The most popular types of Quantum Computing jobs in New York are:

What are popular job titles related to Quantum Computing jobs in New York?

For Quantum Computing jobs in New York, the most frequently searched job titles are:

What job categories do people searching Quantum Computing jobs in New York look for?

The top searched job categories for Quantum Computing jobs in New York are:

What cities in New York are hiring for Quantum Computing jobs?

Cities in New York with the most Quantum Computing job openings:

Infographic showing various Quantum Computing job openings in New York as of September 2026, with employment types broken down into 1% Internship, 84% Full Time, 13% Part Time, and 2% Contract. Highlights an 74% Physical, 3% Hybrid, and 23% Remote job distribution, with an average salary of $143,483 per year, or $69 per hour.

Quantum Computing Research Scientist - Quantum Error Correction - Vice President

Manhattan, NY • On-site

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

Full-time

Medical, Retirement

Re-posted 11 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 Vice President 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
JPMorganChase, one of the oldest financial institutions, offers innovative financial solutions to millions of consumers, small businesses and many of the world's most prominent corporate, institutional and government clients under the J.P. Morgan and Chase brands. Our history spans over 200 years and today we are a leader in investment banking, consumer and small business banking, commercial banking, financial transaction processing and asset management.

We offer a competitive total rewards package including base salary determined based on the role, experience, skill set and location. Those in eligible roles may receive commission-based pay and/or discretionary incentive compensation, paid in the form of cash and/or forfeitable equity, awarded in recognition of individual achievements and contributions. We also offer a range of benefits and programs to meet employee needs, based on eligibility. These benefits include comprehensive health care coverage, on-site health and wellness centers, a retirement savings plan, backup childcare, tuition reimbursement, mental health support, financial coaching and more. Additional details about total compensation and benefits will be provided during the hiring process. 

We recognize that our people are our strength and the diverse talents they bring to our global workforce are directly linked to our success. We are an equal opportunity employer and place a high value on diversity and inclusion at our company. We do not discriminate on the basis of any protected attribute, including race, religion, color, national origin, gender, sexual orientation, gender identity, gender expression, age, marital or veteran status, pregnancy or disability, or any other basis protected under applicable law. We also make reasonable accommodations for applicants' and employees' religious practices and beliefs, as well as mental health or physical disability needs. Visit our FAQs for more information about requesting an accommodation.

JPMorgan Chase & Co. is an Equal Opportunity Employer, including Disability/Veterans

Our Corporate Technology team relies on smart, driven people like you to develop applications and provide tech support for all our corporate functions across our network. Your efforts will touch lives all over the financial spectrum and across all our divisions: Global Finance, Corporate Treasury, Risk Management, Human Resources, Compliance, Legal, and within the Corporate Administrative Office. You'll be part of a team specifically built to meet and exceed our evolving technology needs, as well as our technology controls agenda.

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