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SLAC builds and uses various kinds of lasers to do scientific research. 

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PULSE graduate student Jian Chen in a laser lab at SLAC.

News Feature

Experiment at SLAC's X-ray Laser Opens Door to Exploring Cell Interiors

Image - These micrograph images show rod-shaped bacterial cells suspended in pure water. The dark rectangular shapes inside the cells correspond to naturally occurring crystals within the cells.
News Feature

Laser-timing Tool Works at the Speed of Electrons

Image - An illustration of the setup used to test an "attosecond" timing tool at SLAC's Linac Coherent Light Source X-ray laser. The dashed line represents the arrival time of the X-ray laser.
News Feature

SLAC Experiment Provides New Insight About How Electrons Move Across Molecules

Researchers used SLAC's LCLS X-ray laser to stimulate and measure the electron-transfer process inside a severed methyl iodide molecule.
News Feature

Grad Students and Postdocs Get a Crash Course in Using X-ray Lasers

Archana Raja, a graduate student at Columbia University, explains her group’s poster presentation at SLAC’s Ultrafast X-ray Summer Seminar.
News Feature

Exploding Soccer Ball-shaped Molecules Will Help Biological Studies

Image - Buckyballs, molecules composed of 60 carbon atoms, bust apart as they are struck by intense X-ray pulses at SLAC's Linac Coherent Light Source. (Greg Stewart/SLAC)
Press Release

SLAC Research Reveals Rapid DNA Changes that Act as Molecular Sunscreen

Illustration showing a thymine molecule, DNA helix and the sun.
News Feature

Even in their infancy, X-ray lasers such as SLAC's Linac Coherent Light Source are notching a list of important discoveries, and a special issue...

Image - This illustration represents data derived from 175,000 X-ray diffraction patterns of Trapanosoma brucei cathepsin B, a protein relevant to African sleeping sickness, measured with X-ray pulses at SLAC's Linac Coherent Light Source. (CFEL)
News Feature

SLAC scientists have found a new way to produce bright pulses of light from accelerated electrons that could shrink "light source" technology used around...

A PhD student inspects the microwave undulator.
News Feature

Scientists at SLAC and Stanford show how high-temperature superconductivity emerges out of magnetism in an iron pnictide, a class of materials with great potential...

An illustration of electrons pairing up like dancers at a party
News Feature

Rolls-Royce researchers came to SLAC earlier this month as part of a team testing titanium and its alloys, such as those used in engine...

Photo - Despina Milathianaki, a staff scientist at SLAC's LCLS, holds a series of titanium alloy samples prepared for an experiment. The experiment was designed to study the laser-shocked state of the materials. (Fabricio Sousa/SLAC)
News Feature

SLAC's Siegfried Glenzer has been selected to receive an Ernest Orlando Lawrence Award, presented by the U.S. Secretary of Energy to honor scientists across...

Photo - Siegfried Glenzer
News Feature

A new study, based on an experiment at SLAC's X-ray laser, pins down a major factor behind the appearance of superconductivity—the ability to conduct...

Image - In this illustration, stripes of charge run in perpendicular "ripples" between the copper-oxide layers of a material (top). When a mid-infrared laser pulse strikes the material, it "melts" these ripples and induces superconductivity.