| Course Level: | Master's | |
|---|---|---|
| Course Duration: | 2 Years | |
| Course Language | English | |
| Required Degree | 3 Year Bachelor’s Degree | |
Pursuing an MS in Quantum Optics at Korea University offers world-class research opportunities in a rapidly advancing field. The program combines strong theoretical foundations with cutting-edge experimental training, preparing students for careers in quantum technologies, photonics, and advanced materials. Korea University is one of South Korea’s top institutions, known for its global collaborations, modern laboratories, and highly qualified faculty. Students benefit from an interdisciplinary environment, fostering innovation and problem-solving. Located in Seoul, the university provides exposure to a vibrant research community and industry partnerships, ensuring graduates are well-positioned for both academic and industrial careers in quantum science and technology.
Category |
Details |
|---|---|
|
Program Name |
MS in Quantum Optics (within Physics Department, Korea University) |
|
Degree Awarded |
Master of Science (M.S.) |
|
Course Duration |
2 years (4 semesters) |
|
Language of Instruction |
English / Korean (many graduate-level courses offered in English) |
|
Yearly Tuition Fees |
Approx. USD 6,000 – 7,000 |
|
Total Tuition Fees |
Approx. USD 12,000 – 14,000 |
|
Total Program Cost |
USD 20,000 – 25,000 (including living expenses in Seoul) |
|
Eligibility |
Bachelor’s degree in Physics, Applied Physics, Engineering, or related field |
|
Admission Requirements |
Online application, transcripts, proof of English proficiency (TOEFL/IELTS) or Korean (TOPIK), recommendation letters, statement of purpose, CV, research proposal (optional) |
|
Application Intake |
Spring (March) & Fall (September) |
|
Scholarship |
Korea University Global KU Scholarship, KGSP (Korean Government), research assistantships |
|
Career Prospects |
Researcher in quantum optics, photonics, and quantum technologies; PhD opportunities; R&D roles in tech, semiconductors, communications, and quantum computing industries |
|
Curriculum Structure |
Core physics and quantum optics courses, advanced electives (quantum information, photonics, condensed matter), laboratory research, thesis requirement |