For decades, CU ÐßÐßÊÓƵ has been an internationalÌýleader in quantum physics, and in transforming quantum research breakthroughs into real-world applications—from lasers that detect methane in the air to new microscopes that can probe the world in never-before-seen detail. Over its 60-year history, JILA—a joint Institute between CU ÐßÐßÊÓƵ and NIST—has boasted four NobelÌýPrize winners. Learn more about our latest quantum science and research discoveries.Ìý

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Graphic of photons as particles and waves

New quantum 'stopwatch' can improve imaging technologies

Aug. 24, 2021

Engineers have developed the most efficient device to date for counting single photons, or the tiny packets of energy that make up light.

strontium clock

New $25-million center to advance quantum science and engineering

July 21, 2020

A new National Science Foundation center led by JILA will seek to bring quantum technologies out of the lab and into the real world.

A component in an extreme ultraviolet laser.

Scientists open new window into the nanoworld

July 15, 2020

Physicists at JILA achieve new feats of wafer-thinness in a study published this week.

Henry Kapteyn and Margaret Murnane in their lab at JILA

Keeping up with the Curies: Laser scientists win prestigious physics award

Jan. 27, 2020

Henry Kapteyn and Margaret Murnane, pioneers in the field of laser science, have won this year's prestigious Benjamin Franklin Medal in Physics.

Graphic depicting the weak interactions between neutral fermionic atoms in an ultracold gas.

Turning water into ice in the quantum realm

Aug. 2, 2019

Scientists have discovered that they can nudge clouds of ultracold atoms into two distinct phases where those particles behave in completely different ways.

Bar magnet

Lasers make magnets behave like fluids

April 18, 2019

Researchers have discovered how magnets recover after being blasted by a laser. It turns out, they act a bit like oil and water in a jar.

Optical tweezers

Optical tweezers achieve new feats of capturing atoms

April 2, 2019

Researchers show that they can trap and load lone atoms into large grids with an efficiency unmatched by current methods.

A visualization of a quark gluon plasma

Researchers create tiny droplets of early universe matter

Dec. 10, 2018

Scientists have generated an ultra-hot state of matter called a quark gluon plasma in three shapes and sizes: circles, ellipses and triangles.

Robert Peterson

Microscopic trampoline may help create networks of quantum computers

July 16, 2018

A microscopic trampoline could help engineers to overcome a major hurdle for quantum computers, researchers report.

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