Master of Quantum Technology

1 Years On Campus Masters Program

University of Queensland

Program Overview

The Master of Quantum Technology at The University of Queensland is a 1.5-year postgraduate program combining fundamental and applied physics with advanced quantum technologies. It develops technical and research skills for emerging applications in quantum computing, communication, sensing and related technologies.

Curriculum Structure:

Year 1: Covers quantum physics theory and advanced quantum technology topics, including quantum information, communication and computation, high-precision sensing, noise and error suppression, and quantum error correction. Students also undertake research projects in quantum science laboratories.

Year 2: Students complete the remaining research project and advanced study within the program, applying their knowledge to specialised quantum technology research across areas such as superconducting devices, ultra-cold atoms, micro-mechanical systems and photonics.

Focus Areas: Quantum physics, quantum information, quantum computing, quantum communication, quantum sensing, quantum error correction and photonics.

Learning Outcomes: Apply quantum physics principles, analyse advanced quantum technologies, conduct research and develop solutions to complex problems in quantum science and technology.

Professional Alignment (Accreditation): Develops technical and research capabilities relevant to quantum technology, physics, engineering, computing and related emerging technology sectors.

Reputation (Employability Rankings): UQ is internationally recognised for quantum science and provides access to advanced fabrication and measurement facilities and leading quantum research laboratories.

Experiential Learning (Research, Projects, Internships etc.)

At the University of Queensland, the Master of Quantum Technology program is designed to provide students with hands-on experience that complements theoretical knowledge. This program emphasizes experiential learning, allowing you to engage with cutting-edge technology and collaborate on real-world projects. You'll have access to state-of-the-art facilities and tools that are essential for developing practical skills in quantum technology.

Here are some key aspects of the experiential learning opportunities available in the Master of Quantum Technology program:

- Quantum Computing Labs: Work in specialized laboratories equipped with advanced quantum computing systems, where you can conduct experiments and develop algorithms.
- Collaborative Projects: Engage in group projects that encourage teamwork and innovation, allowing you to apply your knowledge to solve complex problems in quantum technology.
- Internship Opportunities: Gain valuable industry experience through internships with leading tech companies and research institutions, providing a bridge between academic learning and professional practice.
- Access to Software Tools: Utilize industry-standard software such as Qiskit and Cirq for quantum programming, enabling you to design and simulate quantum circuits.
- Field Trips: Participate in field trips to research centers and tech companies, giving you insights into the latest advancements in quantum technology and networking opportunities with professionals in the field.
- Research Institutes: Collaborate with renowned research institutes affiliated with UQ, such as the Centre for Engineered Quantum Systems, to work on groundbreaking projects.
- Library Resources: Benefit from extensive library resources, including access to journals and publications focused on quantum technology and related fields.

Progression & Future Opportunities

The Master of Quantum Technology at the University of Queensland equips graduates with cutting-edge skills and knowledge, preparing them for a range of exciting career opportunities in a rapidly evolving field. Graduates can expect to pursue roles such as Quantum Software Developer, Quantum Research Scientist, and Quantum Systems Engineer. The demand for professionals in quantum technology is on the rise, making this program a strategic choice for your future:

- University Services: UQ offers dedicated career services, including resume workshops, interview preparation, and networking events with industry leaders, ensuring you are well-prepared for the job market.
- Employment Stats and Salary Figures: Graduates from UQ's engineering and technology programs have a high employment rate, with many securing positions shortly after graduation. The average starting salary for roles in quantum technology can range from AUD 80,000 to AUD 120,000, depending on the position and experience.
- University–Industry Partnerships: UQ collaborates with leading organizations such as IBM, Google, and various research institutions, providing students with opportunities for internships, projects, and real-world experience that enhance employability.
- Long-term Accreditation Value: The Master of Quantum Technology is recognized globally, ensuring that your qualification holds value in various international job markets.
- Graduation Outcomes: UQ boasts a strong track record of graduate success, with many alumni advancing to influential positions in academia, industry, and research.

Further Academic Progression: After completing the Master of Quantum Technology, you may choose to pursue a PhD in Quantum Science or a related field, allowing you to delve deeper into research and contribute to groundbreaking advancements. This path not only enhances your expertise but also opens doors to academic positions and high-level research roles in both industry and academia.

Program Key Stats

$60,952
$9,105
$150
July Intake : 31st May


Jun 2030
40%
No
Yes

Eligibility Criteria

NA
3 or 4 Years

NA
NA
NA
6.5
87
NA

Additional Information & Requirements

Country Requirements

Career Options

  • Quantum physicist
  • Photonics engineer
  • Quantum computing engineer
  • Research scientist
  • Solutions architect
  • Quantum materials engineer
  • Project engineer
  • System architect

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