University of San Diego

USA
2 Scholarships 154 Programs 3 Degree levels
Masters

Master's in Chemistry

Offered at University of San Diego, USA
DegreeMasters
FieldChemistry.
A

Cost & earnings at University of San Diego What students borrow here, and what they go on to earn

You borrow $22,940 median federal debt
You repay $261/mo over 10 years
Graduates earn $86,522 10 yrs after entry
Debt clears in 0.5 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Master's in Chemistry (Optics and Quantum Chemistry) at the University of San Diego is a research-led programme that combines advanced physical chemistry, quantum theory and optical techniques. It suits graduates with a strong background in chemistry, physics or engineering who want to specialise in photonics, spectroscopy, computational quantum methods and related research or industry careers.

What you'll study

This specialised master's blends advanced coursework with a substantial research component. Core topics typically include quantum mechanics for chemists, molecular and electronic structure theory, and advanced spectroscopy. Optical subjects cover classical and modern optics, laser spectroscopy, nonlinear optics and photonics. Complementary modules may include computational chemistry methods, statistical mechanics, photochemistry and solid-state materials relevant to optical devices.

Teaching is delivered through a mix of lectures, problem classes and laboratory sessions. A key element is an independent research project or thesis carried out under faculty supervision, which develops experimental skills (laser systems, spectrometers, time-resolved methods) or computational expertise (ab initio and density functional theory, many-body methods, quantum dynamics). Seminars and journal clubs expose students to current literature in quantum chemistry, optical materials and quantum information topics.

  • Advanced Quantum Chemistry and Electronic Structure
  • Laser and Nonlinear Spectroscopy
  • Photonics and Optical Materials
  • Computational Methods in Chemistry
  • Laboratory Techniques in Physical Chemistry
  • Research Thesis or Project

Programme structure

The programme typically combines taught modules with a research thesis. Students follow core and elective units before focusing on an extended research project that culminates in a written dissertation and an oral defence or seminar. Part-time options or flexible study patterns may be available; contact the department for specific arrangements.

Entry requirements

Applicants are normally expected to hold a bachelor's degree in chemistry, physics, chemical engineering or a closely related discipline with a demonstrated strong performance in physical chemistry and mathematics. Typical application components include academic transcripts, a personal statement outlining research interests, two or more academic references and a CV. Applicants whose first language is not English will need to provide evidence of English proficiency.

Relevant laboratory experience and familiarity with quantum mechanics, thermodynamics and basic programming or numerical methods are advantageous. Candidates with substantial professional experience in a related field or with strong undergraduate preparation but non-traditional backgrounds may be considered on an individual basis.

Career prospects

Graduates from this pathway move into a range of roles in industry, academia and the public sector. Typical career destinations include research and development positions in photonics and optical device companies, roles in spectroscopy and instrumentation firms, positions in semiconductor and materials companies, and technical roles in biotechnology where optical methods are applied.

Other pathways include further doctoral study in physical or theoretical chemistry, employment in national laboratories or research institutes, and roles in analytical services, scientific software development and technical consulting. The programme’s emphasis on experimental and computational skills also prepares graduates for careers in quantum technologies and emerging fields such as quantum sensing and quantum materials.

Why study at University of San Diego

The University of San Diego offers a small, closely mentored learning environment where students work directly with faculty on research projects. The department emphasises hands-on training in contemporary optical and spectroscopic techniques as well as computational quantum methods. Students benefit from access to laboratory facilities and opportunities to present research in departmental seminars.

Located in a region with a strong technology, optics and biotech ecosystem, the university provides proximity to a wide range of potential internship and industry contacts. The programme’s size and structure support interdisciplinary collaboration across chemistry, physics and engineering, helping students build the technical and professional skills sought by employers and doctoral programmes alike.

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Programme details are indicative and may change — always verify current information with the official university website before applying.