What is Quantum Computing? - NASA (2024)

What is Quantum Computing? - NASA (1)

Harnessing the quantum realm for NASA’s future complex computing needs

NASA’s Ames Research Center in California’s Silicon Valley is the heart of the agency’s advanced computing efforts, including its exploration and research of quantum computing. Ames leverages its location in the heart of Silicon Valley to forge partnerships with private industry as well. Using these collaborations, the NASA Advanced Supercomputing facility’s resources, and expertise in quantum computing, Ames works to evaluate the potential of quantum computing for NASA missions.

The properties that govern physics at the extremely small scales and low temperatures of the quantum realm are puzzling and unique. Quantum computing is the practice of harnessing those properties to enable revolutionary algorithms that traditional computers wouldn’t be able to run. Algorithms are a set of instructions to solve a problem or accomplish a task in computing. Quantum algorithms require descriptions of what operations should do during computation on a quantum computer, which often takes the form of a software program called a “quantum circuit.”

NASA’s computing needs are escalating as the agency aims for more complex missions across the solar system, as well as continued research in the Earth sciences and aeronautics. Quantum computing, as it matures in the coming years, could provide powerful solutions.

Quantum mechanics describes effects such as superposition, where a particle can be in many different states at once. Quantum entanglement allows particles to be correlated with each other in unique ways that can be utilized by quantum computing. Though why these properties and more occur is still a mystery of science, the way in which they function has been well characterized and researched, allowing quantum computing experts to design hardware and algorithms to use these properties to their advantage.

Ames’ Role

Since 1972, when Ames center director Hans Mark brought the first massively parallel computer – a kind of computer that uses multiple processors at the same time, or in parallel–the center has been at the forefront of developing advances in computing.

Today, the Quantum Artificial Intelligence Laboratory (QuAIL), is where NASA conducts research to determine the capabilities of quantum computers and their potential to support the agency’s goals in the decades to come. Located at Ames, the lab conducts research on quantum applications and algorithms, develops tools for quantum computing, and investigates the fundamental physics behind quantum computing. The lab also partners with other quantum labs across the country, such as those at Google; Oak Ridge National Laboratory, or ORNL; Rigetti; and is part of two of the Department of Energy’s centers under the National Quantum Initiative, specifically the Co-design Center for Quantum Advantage and Superconducting Quantum Materials and Systems Center.

Applications and Algorithms

What future missions could quantum computing help realize?

Quantum computing is a field of study in its infancy. So far, it is too early to implement quantum computing into NASA missions. The role of QuAIL is to investigate quantum computing’s potential to serve the agency’s future needs, for missions yet to be proposed or even imagined.

The key to quantum computing is quantum algorithms – special algorithms uniquely constructed to take advantage of quantum properties, like quantum superposition and quantum entanglement. The properties of the quantum world allow for computations that would take billions of years on classical machines. By experimenting with designing quantum algorithms, QuAIL hopes to use quantum computers to tackle calculations that otherwise would be impossible.

Current research looks into applying quantum algorithms to optimize the planning and scheduling of mission operations, machine learning for Earth science data, and simulations for the design of new materials for use in aeronautics and space exploration. In the future, quantum algorithms could impact NASA’s missions broadly. QuAIL’s role is to help define that future.

Quantum Computing Tools

How can software support quantum algorithms and their applications?

There are a variety of tools QuAIL is developing to support quantum computing. Those tools can help characterize “noise” in quantum devices, assist in error mitigation, compile algorithms for specific hardware, and simulate quantum algorithms.

Because quantum computers need extremely precise and stable conditions to operate, seemingly small issues such as impurities on a superconducting chip or accumulated charged particles can impact a computation. Thus, error mitigation will play a critical role in realizing mature quantum computers.

By modeling what kind of errors occur and the effect they have on calculations, a process called noise characterization, quantum researchers can design error mitigation techniques that can run alongside quantum algorithms to keep them on track.

All algorithms need to be compiled for use on specific hardware. Because quantum hardware is so distinct from traditional computers, researchers must make special efforts to compile quantum algorithms for quantum hardware. In the same way software needs to be coded to a particular operating system, quantum algorithms need to be coded to function on a quantum computer’s specific “operating system,” which also takes hardware into account.

Tools that allow researchers to simulate quantum circuits using non-quantum hardware are key to QuAIL’s objective to evaluate the potential of quantum hardware. By testing the same algorithm on both a traditional supercomputer using a quantum circuit simulator and on real quantum hardware, researchers can find the limits of the supercomputer.

NASA can also use these simulated quantum circuits to check the work of quantum hardware, ensuring that algorithms are being properly executed up until the limit at which the simulated quantum circuit is reached. This was an essential component of confirming that a recent milestone achieved by Google in collaboration with NASA and ORNL, demonstrating the ability to compute in seconds what would take even the largest and most advanced supercomputers days or weeks, had indeed been achieved.

Learn more:

  • Google and NASA Achieve Quantum Supremacy

For researchers:

For news media:

Members of the news media interested in covering this topic should reach out to theAmes newsroom.

What is Quantum Computing? - NASA (2024)

FAQs

What is Quantum Computing? - NASA? ›

“Our missions in the decades to come to the Moon, Mars, and beyond are all fueled by innovations like this one.” Quantum computing is the study of how to harness the unique properties of quantum mechanics to solve certain types of problems far faster than on traditional computers.

How does NASA use quantum computing? ›

How is the D-Wave quantum computer helping NASA? D-Wave Quantum is deployed at QuAIL (Quantum Artificial Intelligence Laboratory). QuAIL is the space agency's hub for an experiment to assess the potential of quantum computers to perform calculations that are difficult or impossible using conventional supercomputers.

Why did NASA shut down quantum computing? ›

Quantum Computing - Why did NASA shut down quantum computer? NASA had to shut down the quantum computer due to a sudden onset of unusual behavior that they could not explain. The strange occurrence that led to the shutdown is referred to as 'qubit loss'.

What is quantum computing in simple words? ›

Quantum computing is a multidisciplinary field comprising aspects of computer science, physics, and mathematics that utilizes quantum mechanics to solve complex problems faster than on classical computers. The field of quantum computing includes hardware research and application development.

Is Elon Musk working on a quantum computer? ›

However, it turns out that not all of his controversial interviews are real. A since-deleted Facebook video, posted in August 2023, showed Elon Musk telling Tucker Carlson that he would launch a quantum AI program to end poverty — but it was a scam.

Has NASA shut down quantum computing? ›

The abrupt shutdown of NASA's quantum computing project was triggered by an unforeseen incident during a routine test. The quantum computer, while analyzing a complex simulation, exhibited an unprecedented level of computational power, solving a problem that was previously considered intractable.

What is the biggest problem with quantum computing? ›

Challenges of quantum computing

The three main challenges we'll look at include quantum decoherence, error correction, and scalability. Each is a major hurdle on the road to quantum computing, and must be overcome if the technology is to reach full potential.

How close is quantum computing to reality? ›

Quantum computing is real, alright, but it might not be all it's cracked up to be. There are still many limitations, but as new technologies emerge to improve quantum computing, so too do it's uses across industries.

What will quantum computing replace? ›

Quantum computers will augment classical computing for the majority of work they will do for the foreseeable future. For now, since quantum computers can't yet scale to process our enormous real-world datasets, we still need classical systems to do the large scale processing.

What does quantum computing actually do? ›

Quantum computing uses the qubit as the basic unit of information rather than the conventional bit. The main characteristic of this alternative system is that it permits the coherent superposition of ones and zeros, the digits of the binary system around which all computing revolves.

Who is the father of quantum computing? ›

David Deutsch FRS

What is quantum computing in a nutshell? ›

What is quantum computing? Quantum computing uses specialized technology—including computer hardware and algorithms that take advantage of quantum mechanics—to solve complex problems that classical computers or supercomputers can't solve, or can't solve quickly enough.

What quantum computers Cannot do? ›

For instance, contrary to some reports, quantum computers cannot store infinite data. While qubits can hold more information than binary bits because of their ability to exist in multiple states simultaneously, there is still a finite limit to the number of qubits and the data they can represent.

Is Apple doing quantum computing? ›

Apple's new PQ3 post-quantum cryptographic (PQC) protocol introduced last week is the latest manifestation of a trend that will accelerate over the next few years as quantum computing matures and takes root in a variety of different industries.

Does anyone own a quantum computer? ›

Can You Buy a Quantum Computer? Yes, it's possible to buy a quantum computer in 2023. However, quantum computers are not yet widely available to the general public and are currently very expensive and extremely difficult to manufacture.

What current topics are being developed by NASA using quantum physics? ›

Basic research activities include laser cooling and trapping of atomic particles, ultra cold atom physics, nonlinear optics and quantum optics, frequency control and precision measurements.

What research has NASA completed in the field of quantum physics? ›

For the first time in space, scientists have produced a quantum gas containing two types of atoms. Accomplished with NASA's Cold Atom Laboratory aboard the International Space Station, the achievement marks another step toward bringing quantum technologies currently available only on Earth into space.

How can quantum computing be used in the real world? ›

A real-life example of quantum computing is drug discovery. By making it easier to model the behavior of proteins, quantum computing can help researchers understand existing drugs and create new drugs to treat diseases like Alzheimer's and cancer.

Can a quantum computer simulate the universe? ›

Lloyd also postulates that the Universe can be fully simulated using a quantum computer; however, in the absence of a theory of quantum gravity, such a simulation is not yet possible. "Particles not only collide, they compute."

Top Articles
Latest Posts
Article information

Author: Wyatt Volkman LLD

Last Updated:

Views: 6280

Rating: 4.6 / 5 (46 voted)

Reviews: 93% of readers found this page helpful

Author information

Name: Wyatt Volkman LLD

Birthday: 1992-02-16

Address: Suite 851 78549 Lubowitz Well, Wardside, TX 98080-8615

Phone: +67618977178100

Job: Manufacturing Director

Hobby: Running, Mountaineering, Inline skating, Writing, Baton twirling, Computer programming, Stone skipping

Introduction: My name is Wyatt Volkman LLD, I am a handsome, rich, comfortable, lively, zealous, graceful, gifted person who loves writing and wants to share my knowledge and understanding with you.