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Physics Data Analyst Jobs in Rochester, NY (NOW HIRING)

Familiar with the fundamentals of semiconductor device physics. * Familiar with C++ and data analysis software. * Experience or knowledge in the GR&R process. * Demonstrated ability in problem ...

The desired degrees are in Optics, Physics, Electrical Engineering, or a closely related field ... Can work independently and have good writing and data analyzing skills. * Good computer skills with ...

The desired degrees are in Optics, Physics, Electrical Engineering, or a closely related field ... Can work independently and have good writing and data analyzing skills. * Good computer skills with ...

Strong understanding of semiconductor device physics and back-end wafer processes. * Proficient in SPC, DOE, and data analysis tools. * Demonstrated success in yield, throughput, and cost improvement ...

Utilize statistical methods and data analysis tools to improve process capability and manufacturing ... Bachelor's Degree in Engineering, Physics, Materials Science, Chemistry, Electrical Engineering ...

Contribute to related data processing and image reconstruction workflows when required. B) Image ... Master's or PhD in MRI Physics, Biomedical Engineering, Medical Physics, Electrical Engineering ...

Contribute to related data processing and image reconstruction workflows when required. B) Image ... Master's or PhD in MRI Physics, Biomedical Engineering, Medical Physics, Electrical Engineering ...

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Physics Data Analyst information

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$33.6K

$81.6K

$134.2K

How much do physics data analyst jobs pay per year?

As of Aug 21, 2026, the average yearly pay for physics data analyst in Rochester, NY is $81,560.00, according to ZipRecruiter salary data. Most workers in this role earn between $61,700.00 and $95,700.00 per year, depending on experience, location, and employer.

What does a physics data analyst do?

A Physics Data Analyst collects, processes, and interprets large sets of data generated from physics experiments or simulations. They use statistical methods, programming, and specialized software to extract meaningful insights and support scientific research. Their work often involves cleaning data, identifying trends, creating visualizations, and collaborating with physicists to draw conclusions that can advance understanding in areas such as particle physics, astrophysics, or materials science.

What are some common challenges physics data analysts face when interpreting experimental data?

Physics Data Analysts often work with large, complex datasets that may contain noise or inconsistencies due to experimental limitations. One common challenge is accurately distinguishing between meaningful patterns and random fluctuations, which requires strong statistical knowledge and experience with data-cleaning techniques. Additionally, analysts must frequently collaborate with physicists and engineers to understand the context of the data and ensure proper interpretation, making strong communication skills important. Overcoming these challenges involves continually updating technical skills and staying current with best practices in both physics and data analysis.

What are the key skills and qualifications needed to thrive as a physics data analyst, and why are they important?

To thrive as a Physics Data Analyst, you need a solid background in physics, mathematics, and statistical analysis, often supported by a degree in physics or a related field. Proficiency with programming languages like Python or MATLAB, data visualization tools, and familiarity with statistical software and databases are typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help you interpret complex datasets and share insights with diverse teams. These skills ensure accurate analysis, meaningful data-driven conclusions, and successful collaboration in research or industry environments.

What is the difference between Physics Data Analyst vs Data Scientist?

AspectPhysics Data AnalystData Scientist
Required CredentialsBachelor's or Master's in Physics, Data Analysis, or related fieldsBachelor's or Master's in Computer Science, Statistics, or related fields
Work EnvironmentResearch labs, scientific organizations, industry R&DTech companies, finance, healthcare, consulting
Employer & Industry UsageResearch institutions, aerospace, energyTech firms, finance, marketing
Common Search & ComparisonPhysics Data Analyst vs Data Scientist

The main difference between a Physics Data Analyst and a Data Scientist lies in their focus and industry. Physics Data Analysts typically work in research or scientific environments, applying physics principles to analyze data. Data Scientists have a broader scope, often working across industries like tech, finance, and healthcare, utilizing advanced statistical and machine learning techniques. Both roles require strong analytical skills, but their applications and work settings differ.

What are popular job titles related to Physics Data Analyst jobs in Rochester, NY?

For Physics Data Analyst jobs in Rochester, NY, the most frequently searched job titles are:

What cities near Rochester, NY are hiring for Physics Data Analyst jobs?

Cities near Rochester, NY with the most Physics Data Analyst job openings:

Quantum Postdoctoral Researcher for 3D Cavity Quantum Hardware

Fermilab

Batavia, NY • On-site

$69K - $92K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 27 days ago


Fermilab rating

9.1

Company rating: 9.1 out of 10

Based on 9 frontline employees who took The Breakroom Quiz

11th of 120 rated laboratories


Job description

The expected hiring range for this position is:

$69,800.00-$92,600.00.

Please note that the pay range information is a general guideline only. The pay offered to a selected candidate will be determined based on factors such the scope and responsibilities of the position, qualifications of the selected candidate, business considerations, internal equity, and external market pay for comparable jobs.

This position can potentially offer relocation. This is a fixed term position for the period of three years.

About the Position:

The Superconducting Quantum Materials and Systems Center (SQMS) at Fermilab seeks a Quantum Postdoctoral Research Associate - 3D Cavity Quantum Hardware to support critical research activities within the Superconducting Quantum Materials and Systems (SQMS) Center. This position focuses on the development of advanced superconducting quantum hardware, with particular emphasis on 3D cavity-based quantum processing units and ultra-coherent superconducting cavity platforms for quantum information processing. Under general direction and in consultation with senior scientists, the successful candidate will conduct independent research aligned with the Laboratory's mission and contribute to the development, measurement, control, and integration of next-generation quantum systems. This role will help maintain technical continuity, accelerate progress on key SQMS deliverables, and strengthen Fermilab's leadership in superconducting quantum technologies, modular quantum architectures, and quantum sensing applications.

What your day-to-day as a Quantum Postdoctoral Research Associate will look like:

  • Conduct research in superconducting quantum hardware, with emphasis on 3D cavity-based quantum processing units, bosonic modes, qudits, and circuit QED systems.
  • Design, simulate, build, install, commission, and characterize new or upgraded elements of superconducting quantum experiments, including ultra-coherent 3D cavities, ancilla qubits, tunable couplers, microwave control and readout hardware, filters, interconnects, and cryogenic measurement systems.
  • Develop and implement experimental techniques for quantum control, readout, calibration, and characterization of multimode superconducting quantum systems.
  • Contribute to the development of large-dimensional bosonic qudits and multimode quantum processors for quantum computing, HEP-relevant quantum simulation, and hardware-efficient quantum information processing.
  • Participate in data acquisition, conduct analysis, develop models and simulations, and present/publish outcomes at conferences and/or in refereed journals.
  • Contribute to research directions relevant to bosonic quantum information processing, modular superconducting quantum architectures, error-detected or error-corrected operations, quantum interconnects, and related quantum sensing applications.
  • Work collaboratively with Fermilab scientists, engineers, technicians, students, postdocs, and external collaborators across the SQMS Center.
  • Perform other duties as assigned by supervisor.
  • Abide by and is responsible for performing all duties in accordance with all environmental, health and safety regulations and practices pertinent to this position.


Essential Competencies and Attributes for Success:

  • Appointees usually have recently completed their PhD (often within the last two years) or are expected to complete it within the current calendar year.


Applicable Knowledge, Skills and Abilities Required:

  • Demonstrated potential to make contributions to the Laboratory that will subsequently qualify them for appointment as an Associate Scientist.
  • Strong background in quantum mechanics and experimental physics, applied physics, electrical engineering, or related areas.
  • Knowledge of superconducting quantum circuits, microwave resonators, circuit QED, quantum measurement, or related quantum hardware platforms.
  • Ability to work independently while contributing effectively to a highly collaborative research environment.
  • Ability to communicate effectively through written reports, presentations, publications, and technical discussions.
  • Self-motivation, scientific curiosity, and interest in developing next-generation superconducting quantum hardware platforms.

Additional Skills That Will Set You Apart:

  • Experience with superconducting qubits, 3D cavities, microwave resonators, bosonic modes, qudits, tunable couplers, or related superconducting quantum systems.
  • Experience with cryogenic microwave measurements, quantum control, microwave electronics, RF engineering, or low-temperature experimental techniques.
  • Experience with multimode quantum control, bosonic encoding, qudit operations, error-detected operations, or quantum processor calibration.
  • Experience with device modeling, electromagnetic simulation, circuit simulation, Hamiltonian modeling, or numerical analysis of quantum systems.
  • Experience with experimental automation, calibration, data acquisition, and data analysis.
  • Interest in the intersection of superconducting quantum computing, bosonic quantum information, modular quantum architectures, and HEP-relevant quantum applications.

Work Arrangement:

  • Onsite: This is an onsite role, and the candidate must be able to work from our Batavia office.

Benefits/Perks:

Fermilab offers a competitive and comprehensive benefits program, including:

  • Medical, Dental, Vision and Flexible Spending Account
  • Paid time-off
  • Life insurance
  • Short and Long-term disability insurance
  • Retirement benefits
  • Onsite day care

Why Fermilab:
Fermilab is America's premier laboratory for particle physics and accelerator research, funded by the U.S. Department of Energy. We support discovery science experiments in Illinois and locations around the world, including deep underground mines in South Dakota and Canada, mountaintops in Arizona and Chile, CERN in Europe and the South Pole.

Pre-Employment Screening:


Drug-Free Workplace & Pre-Employment Screening

Fermilab is dedicated to fostering a safe, productive and drug-free environment. An offer of employment is contingent upon the successful completion of a background check and drug screening.

HSPD-12

In accordance with Homeland Security Presidential Directive 12 (HSPD-12) new employees are required to obtain and maintain a HSPD-12 Personal Identity Verification (PIV) Credential. To obtain this credential, new employees must successfully complete and pass a federal background check investigation. This investigation includes a declaration of illegal drug activities, including use, supply, possession, or manufacture. This includes marijuana and cannabis derivatives, which are still considered illegal under federal law, regardless of state laws. Failure to obtain or maintain such government access authorization could result in the withdrawal of a job offer or future termination of employment.

Foreign Government Sponsored Activities

Fermilab employees, and certain guest researchers and contractors, are subject to particular restrictions related to participation in Foreign Government Sponsored or Affiliated Activities, as defined and detailed in United States Department of Energy Order 486.1A. Such individuals will be asked to disclose any participation for review by Fermilab's Office of General Counsel.

REAL-ID Requirement for access to Fermilab Campus
Fermilab requires all members of the public to produce a REAL-ID, or equivalent, to access the Fermilab Campus for interviews or career events. A list of acceptable forms of ID can be found here: https://get-connected.fnal.gov/wp-content/uploads/2021/09/REALID-Documents.pdf. If a candidate is selected for an interview but does not possess any of the equivalent documents, we may schedule a virtual interview.

Equal Opportunity Statement

Fermilab is an equal opportunity employer. We evaluate qualified applicants without regard to race, color, religion, sex, age, national origin, disability, veteran status, genetic information, and other legally protected categories.


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