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Physics Data Analyst Jobs in Hanover, NH (NOW HIRING)

Optical Fabrication Engineer

Lebanon, NH · On-site

$144K - $187K/yr

Deep working knowledge of optical fabrication physics: Preston equation, Hertzian contact, SSD ... Metro Script (Zygo OMP-0399P) scripting capability for automated measurement and data analysis.

Leading the development of test processes, analysis of results, and appraisal of integrity of ... Preferred: * Working knowledge of plasma physics and fluid dynamics. * Experience with ...

Leading the development of test processes, analysis of results, and appraisal of integrity of ... Preferred: * Working knowledge of plasma physics and fluid dynamics. * Experience with ...

Optical Fabrication Engineer

Lebanon, NH · On-site

$144K - $187K/yr

Unlike a CNC-centric role, this position is built around the physics and craftsmanship of ... MetroScript (Zygo OMP-0399P) scripting capability for automated measurement and data analysis.

Physics Data Analyst information

See Hanover, NH salary details

$33.9K

$82.5K

$135.8K

How much do physics data analyst jobs pay per year?

As of Aug 27, 2026, the average yearly pay for physics data analyst in Hanover, NH is $82,506.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,400.00 and $96,800.00 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 job categories do people searching Physics Data Analyst jobs in Hanover, NH look for?

The top searched job categories for Physics Data Analyst jobs in Hanover, NH are:

Infographic showing various Physics Data Analyst job openings in Hanover, NH as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $82,506 per year, or $39.7 per hour.

Optical Fabrication Engineer

Lebanon, NH • On-site

CivicMinds, Inc.
Recruiting and Staffing Services • 51 - 200 employees

$144K - $187K/yr

Full-time

Re-posted 16 days ago


Job description

Optical Fabrication Engineer
Location: Lebanon, NH
Key Responsibilities
Conventional Fabrication - Grinding, Lapping & Polishing
  • Develop, qualify, and document loose-abrasive grinding and pitch-polishing processes for flats, spheres, prisms, and wedges across optical glasses, fused silica, calcium fluoride, and crystalline materials.
  • Own pitch selection and management for the full fabrication pitch range (Gugolz #55-#82, Universal Photonics CP #55-#82); specify blends, flow control, channel geometry, and temperature regimes for each application.
  • Control and troubleshoot cerium oxide and diamond slurry chemistry, concentration, pH, and contamination for consistent removal rate and surface quality.
  • Diagnose and mitigate subsurface damage (SSD); establish grind-to-polish transition strategies that minimize polishing time while meeting figure and finish requirements.
  • Perform CP lap conditioning and pad management; drive figure convergence on 12"-96" continuous polishers.

Double-Sided Lapping & Polishing (DSP/DSL)
  • Own process development and optimization for SpeedFam 22B, OptiPro GlassMaster 720, and equivalent equipment.
  • Design and qualify carriers for new part geometries; specify pocket placement, eccentricity, and pressure distribution to achieve target figure and parallelism.
  • Apply planetary kinematics speed ratio (k), relative velocity, and Preston equation fundamentals to predict and control removal rate and uniformity.
  • Troubleshoot common DSP/DSL failure modes: center-to-edge non-uniformity, carrier wear, pad glazing, part chipping, and carrier-induced scratching.

Prism, Wedge & Complex Geometry Work
  • Lead prism angle fabrication including right-angle, Dove, Penta, Schmidt, and roof prisms; control pyramidal error, angle tolerance, and 90° squareness to arc-second levels.
  • Specify and execute wax blocking, pitch button blocking, and array blocking strategies for prism and wedge production.
  • Apply blocking-plate wedge analysis to predict and control cross-wedge and thickness variation in array-blocked components.
  • Develop multi-element assembly and de-blocking procedures that protect finished surfaces.

Metrology & Process Control
  • Operate Zygo GPI/Fizeau and New View interferometers; interpret MetroPro / MX output including Zernike decomposition, PV/RMS figure, slope, and PSD/MSF analysis.
  • Use Metro Script (OMP-0399P) for automated measurement routines, including the center-phase-array method for data centering and translation on masked apertures.
  • Specify and apply MIL-PRF-13830B and ISO 10110 surface quality, figure, wedge, and centration requirements on engineering drawings.
  • Use ZEISS CALYPSO CMM, Prism Master, autocollimators, and mechanical inspection tools to qualify dimensional and angular tolerances.
  • Partner with Quality to drive FAI (AS9102), Gage R&R, and corrective action for fabrication yield issues.

Process Engineering & Continuous Improvement
  • Author and maintain work instructions, SOPs, and process travellers for conventional fabrication operations in ERP system.
  • Lead root-cause analysis on yield loss, scrap, and rework; implement preventive measures with measurable impact.
  • Evaluate and qualify new equipment, tooling, and consumables (pitch, abrasives, carriers, blocking materials).
  • Mentor Optical Fabrication Technicians I-III; support skills development, competency assessments, and training.
  • Collaborate with operations on producibility reviews and design-for-fabrication feedback during quoting and program kick-off.

Required Qualifications
Experience
  • 5+ years of hands-on precision optical fabrication experience in a defense, aerospace, or scientific optics production environment.
  • Demonstrated expertise in conventional (non-CNC) fabrication processes: loose-abrasive grinding, pitch polishing, double-sided lapping/polishing, and prism work.
  • Proven ability to independently develop and qualify fabrication processes from raw blank through finished component.
  • Track record of solving complex yield, figure, or finish problems through first-principles analysis.

Technical Skills
  • Deep working knowledge of optical fabrication physics: Preston equation, Hertzian contact, SSD mechanics, and pitch rheology.
  • Expert-level pitch polishing tool preparation, lap conditioning, hand figuring, and full-aperture convergence.
  • Double-sided lapping/polishing experience on SpeedFam, GlassMaster, Lap master, or equivalent planetary machines.
  • Prism fabrication experience including angle control, blocking, and arc-second measurement.
  • Proficient with Zygo interferometers and MetroPro; able to interpret Zernike, PSD, and slope data.
  • Able to read and interpret optical drawings per MIL-PRF-13830B and ISO 10110 (all applicable parts).
  • Solid grasp of ASME Y14.5 GD&T as applied to optical components.

Education
  • Bachelor's degree in Optical Engineering, Physics, Materials Science, Mechanical Engineering, or a related technical field, with 5+ years of hands-on precision optical fabrication experience; OR
  • 10+ years of directly applicable precision optical fabrication experience in lieu of a degree, with demonstrated expertise across grinding, polishing, metrology, and complex geometry work.

Preferred Qualifications
  • Experience with continuous polishers (CP) up to 96" diameter.
  • Metro Script (Zygo OMP-0399P) scripting capability for automated measurement and data analysis.
  • Familiarity with QED MRF (magnetorheological finishing), ion beam figuring, or other sub-aperture deterministic processes as complements to conventional work.
  • Experience with optical glass, such as N-BK7, or ceramic materials, such as Zerodur. Experience with crystalline and IR materials (ZnS, Ge, Si, ZnSe, sapphire).
  • Familiarity with AS9100 quality management system requirements.
  • Working knowledge of ERP/MRP systems for production routing and travellers.
  • Exposure to acid etching, MRF, or other post-polish surface treatments.