# Quantum Science & Technologies
**Source**: https://engineering.nyu.edu/impact/quantum
**Parent**: https://engineering.nyu.edu/
### Realizing the promise of quantum science & technology
Quantum science has the potential to revolutionize technologies across multiple domains, from computing and communications, to sensors and secure data transmission, to global logistics and infrastructure security. However, the journey to realizing quantum’s full promise has been hindered by a fragmented landscape across academia, industry, and government characterized by ad-hoc collaboration.
At NYU, we see an opportunity to change this dynamic by creating a uniquely collaborative ecosystem that bridges disciplines and sectors. Our goal is to dramatically accelerate innovation in quantum materials and systems by fostering deep collaboration across diverse fields — from physics and engineering to computer science and materials — around real-world impact in healthcare, finance, cybersecurity, communications, and climate sustainability.
---
## Academic Programs
[Undergraduate](#0)
####
##### Bachelor's Degrees
- [Chemical and Biomolecular Engineering](https://engineering.nyu.edu/academics/programs/chemical-and-biomolecular-engineering-bs)
- [Computer Engineering](https://engineering.nyu.edu/academics/programs/computer-engineering-bs)
- [Electrical and Computer Engineering](https://engineering.nyu.edu/academics/programs/electrical-engineering-and-computer-engineering-bs)
- [Electrical Engineering](https://engineering.nyu.edu/academics/programs/electrical-engineering-bs)
- [Mathematics](https://engineering.nyu.edu/academics/programs/mathematics-bs)
- [Physics and Mathematics](https://engineering.nyu.edu/academics/programs/mathematics-and-physics-bs)\
##### Minors
- [Applied Physics](https://bulletins.nyu.edu/undergraduate/engineering/programs/applied-physics-minor/)
- [Computer Engineering](https://bulletins.nyu.edu/undergraduate/engineering/programs/computer-engineering-minor/)
- [Electrical Engineering](https://bulletins.nyu.edu/undergraduate/engineering/programs/electrical-engineering-minor/)
- [Mathematics](https://bulletins.nyu.edu/undergraduate/engineering/programs/mathematics-minor/)
- [Quantum Technology](https://bulletins.nyu.edu/undergraduate/engineering/programs/quantum-technology-minor/)
[Graduate](#0)
####
##### Master's Degrees
- [Chemical Engineering](https://engineering.nyu.edu/academics/programs/chemical-engineering-ms)
- [Computer Engineering](https://engineering.nyu.edu/academics/programs/computer-engineering-ms)
- [Cybersecurity+](https://engineering.nyu.edu/academics/programs/cybersecurity-ms)
- [Electrical Engineering](https://engineering.nyu.edu/academics/programs/electrical-engineering-ms)
- [Mathematical Science](https://engineering.nyu.edu/academics/programs/mathematics-ms)
- [Mechatronics & Robotics](https://engineering.nyu.edu/academics/programs/mechatronics-and-robotics-ms)
- [Quantum Science & Technology](https://engineering.nyu.edu/quantum-science-technology-ms)
##### Doctorate Degree
- [Chemical Engineering](https://engineering.nyu.edu/academics/programs/chemical-engineering-phd)
+ *Available Online and On Campus*
## Hands-on Learning: Vertically Integrated Projects
Vertically Integrated Projects (VIP) are multi-year, multidisciplinary projects that emphasize innovative and research-active education.
### [High Performance Computing](https://engineering.nyu.edu/research/student-research/vertically-integrated-projects/vip-teams/high-performance-computing)
Understand the use of advanced computing in research projects: Design, Deploy, Configure, and Optimize High Performance Computing clusters
### [OptiReality: The Optimal AI Solution for Virtual Reality](https://engineering.nyu.edu/research/student-research/vertically-integrated-projects/vip-teams/optireality-optimal-ai-solution-virtual-reality)
Enabling real-time immersive AR/VR with efficient generative AI algorithms and edge deployment.
[View all VIP Teams](https://engineering.nyu.edu/research-innovation/student-research/vertically-integrated-projects)
## Latest Stories & Events
[**All Events**](https://engineering.nyu.edu/events)
Tandon in the Media
### [Researchers Demonstrate Substrate Design Principles for Scalable Superconducting Quantum Materials](https://engineering.nyu.edu/news/researchers-demonstrate-substrate-design-principles-scalable-superconducting-quantum-materials "Researchers Demonstrate Substrate Design Principles for Scalable Superconducting Quantum Materials")
#### From Brookhaven National Laboratory
Tandon in the Media
### [Stable superconductors? It all depends on the substrate](https://engineering.nyu.edu/news/stable-superconductors-it-all-depends-substrate "Stable superconductors? It all depends on the substrate")
#### From Tom’s Hardware
Tandon in the Media
### [Quantum Dots Offer an Eco-Friendly Alternative for Infrared Imaging](https://engineering.nyu.edu/news/quantum-dots-offer-eco-friendly-alternative-infrared-imaging "Quantum Dots Offer an Eco-Friendly Alternative for Infrared Imaging ")
#### From Technology Networks, September 25, 2025
Tandon in the Media
### [NYU Launches Quantum Institute to Drive Cross-Disciplinary Research and Innovation](https://engineering.nyu.edu/news/nyu-launches-quantum-institute-drive-cross-disciplinary-research-and-innovation "NYU Launches Quantum Institute to Drive Cross-Disciplinary Research and Innovation ")
#### From The Quantum Insider
News
### [Industry and Academic Leaders Herald the Dawn of a New Quantum Era — And NYU Is Poised to Play a Major Role](https://engineering.nyu.edu/news/industry-and-academic-leaders-herald-dawn-new-quantum-era-and-nyu-poised-play-major-role "Industry and Academic Leaders Herald the Dawn of a New Quantum Era — And NYU Is Poised to Play a Major Role")
Press Release
### [NYU Tandon joins select group offering Master's Degree in Quantum Technologies](https://engineering.nyu.edu/news/nyu-tandon-joins-select-group-offering-masters-degree-quantum-technologies "NYU Tandon joins select group offering Master's Degree in Quantum Technologies ")
- [Load More](https://engineering.nyu.edu/impact/quantum?page=1 "Load more items")
## Research Labs and Groups
### [Nanofabrication Cleanroom](https://engineering.nyu.edu/research/nanofab "Nanofabrication Cleanroom ")
Building the future of quantum and enabling cutting-edge research in biosensing by transforming advanced materials into next-generation devices
### [Pine Research Group](https://physics.nyu.edu/pine/home.html "Pine Research Group")
We study the physics of soft mesoscopic materials, sometimes known as complex fluids. We investigate colloids, emulsions, polymers, surfactant solutions, non-Brownian suspensions, gels...
### [PicoForce Lab](https://www.picoforcelab.org/ "PicoForce Lab")
Riedo Group — Understanding and manipulating solids and liquids at the nanoscale is a matter of continuously growing scientific and technological interest. Our mission is to develop novel scanning probe microscopy-based methods for fabricating the next generation of electronic and biomedical devices, as well as for groundbreaking studies of the mechanical, physical, and chemical properties of novel nanomaterials, including 2D materials and bio-interfaces.
### [NYU Nanolab](https://wp.nyu.edu/nanolab "NYU Nanolab")
Our research team studies the physics of electronic materials and their application in building devices and circuits. We are an experimental group with experience in the synthesis of layered materials, nanofabrication of electronic devices, and electrical measurements at both room and cryogenic temperatures.
[View More Quantum Research Labs](https://engineering.nyu.edu/research/labs-and-groups?field_ia_expertise_tid=25992)