2025 is the International Year of Quantum Science and Technology

From its inception 100 years in the past, the sphere of quantum mechanics has produced some of essentially the most surprising insights into the pure world, unlocking an enormous universe of applied sciences that improve our every day lives in methods we might not even notice. From GPS and smartphones, to cybersecurity and precision devices for protection, to exquisitely correct measurements that underpin our industrial transactions, quantum has made our applied sciences extra correct, extra reliable, and safer. 

Join NIST in celebrating the numerous excellent achievements of our researchers and collaborators in advancing the frontiers of quantum and assist us usher within the subsequent 100 years of chance. And study a bit bit extra about quantum alongside the way in which!

100 Years of Quantum Research

Throughout the 12 months, we plan to spotlight some of NIST’s most influential and essential papers that helped advance the frontiers of quantum science analysis. 

Our first batch of papers highlights NIST’s analysis in primary quantum science, which has laid a basis on which we proceed to construct as extra discoveries are made, in flip resulting in extra applied sciences and lasting impacts on our high quality of life. Papers highlighted embrace ones from way back to 1957!

See what papers we’re highlighting

Make positive to test again all year long as we add further papers from NIST authors.

International Year of the Quantum Blog Posts

quantum phrases defined

What is Entanglement?
Experience quantum entanglement with a playful twist — that includes our “quantum deer” that may simply exclaim, “Oh, deer!” or “Deer me!” Discover how entangled particles mimic one another, irrespective of the space, and see how this quirky phenomenon is paving the way in which for breakthroughs in computing, sensing and communication. Oh, deer!
What are Qubits?
Step into the fascinating world of quantum mechanics on this fast explainer and discover out a bit BIT about what makes QUBITS so particular. What bits are for classical computer systems, qubits are for the quantum computer systems and atomic clocks of the longer term.
What is Quantization?
Step into the fascinating world of quantum mechanics on this fast explainer! We break down how quantization works and how particles like electrons can solely exist in particular, discrete states—very like an worker who can solely stand on designated steps of a staircase.
What is Decoherence?
Decoherence is a giant problem in quantum computing. But what’s it? This fast explainer explains how fragile quantum states, like qubits, can lose their quantum magic after they work together with the setting. Mastering decoherence may unlock the longer term of quantum know-how.
What is Superposition?
Superposition is a key precept of quantum physics. But what does it imply? Our NIST scientist explains how particles, like qubits, can exist in a number of states without delay—each 0 and 1—till measured. Explore this mind-bending idea and see how superposition powers the longer term of quantum know-how.

 

Where is quantum in your on a regular basis life?

Text: Bringing about GPS, which depends on atomic clocks to pinpoint your location on Earth

Credit:

NIST

Text: Making possible MRI machines that produce clear images inside your body.

Credit:

NIST

Discover more everyday uses of quantum



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