/**/eventsLoaded([{"total":5255,"nid":"47726","tid":"846","vid":"tags","category":null,"name":"HPC, Simulation, and Data Science","title":"New research proves quantum computing errors correlated, ties them to cosmic rays","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/new-research-proves-quantum-computing-errors-correlated-ties-them-cosmic-rays","pub_date":"June 28, 2021","terms":"851:Computing,846:HPC, Simulation, and Data Science,1026:Livermore Center for Quantum Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47726\/new-research-proves-quantum-computing-errors-correlated-ties-them-cosmic-rays","alias_path":"\/article\/47726\/new-research-proves-quantum-computing-errors-correlated-ties-them-cosmic-rays","body_value":"Research by a Lawrence Livermore National Laboratory (LLNL) physicist and a host of collaborators is shedding new light on one of the major challenges to realizing the promise and potential of quantum computing \u2014 error correction. 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In an effort to address some of the most challenging applications, such as X-ray radiography of high areal density objects for industrial and national security applications,\u2026","body_mini_value":"Intense short-pulse laser-driven production of bright high-energy sources, such as X-rays, neutrons and protons, has been shown to be an\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/laserSimulations_875x500px.jpg?itok=FOPWf5-C","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/laserSimulations_875x500px.jpg?itok=SCyUYg0v","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/laserSimulations_875x500px.jpg?itok=3dYFp2hG","alt":"laser simulations 062421"},{"total":5255,"nid":"47711","tid":"976","vid":"tags","category":null,"name":"Careers","title":"Lab names Rachelle Jeppson chief financial officer","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/lab-names-rachelle-jeppson-chief-financial-officer","pub_date":"June 23, 2021","terms":"976:Careers,996:Supply Chain","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47711\/lab-names-rachelle-jeppson-chief-financial-officer","alias_path":"\/article\/47711\/lab-names-rachelle-jeppson-chief-financial-officer","body_value":"Rachelle Jeppson has been selected as the chief financial officer (CFO) for Lawrence Livermore National Laboratory (LLNL), Director Kimberly Budil announced today. Her appointment will be effective June 27. As CFO, Jeppson will oversee the Lab\u2019s $2.6 billion annual budget and will provide management and leadership for a large staff of financial professionals covering\u2026","body_mini_value":"Rachelle Jeppson has been selected as the chief financial officer (CFO) for Lawrence Livermore National Laboratory (LLNL), Director\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/jeppsonRachelle_875x500px.jpg?itok=FrSav4yb","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/jeppsonRachelle_875x500px.jpg?itok=Az_iC0Zg","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/jeppsonRachelle_875x500px.jpg?itok=hkbxhkjF","alt":"Rachelle Jeppson "},{"total":5255,"nid":"47706","tid":"286","vid":"tags","category":null,"name":"National Ignition Facility","title":"Scientists create a novel instrument to probe thermal states of extreme matter on Earth","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/scientists-create-novel-instrument-probe-thermal-states-extreme-matter-earth","pub_date":"June 23, 2021","terms":"896:Lasers,891:Lasers and Optical S\u0026T,286:National Ignition Facility,901:National Ignition Facility and Photon Science,881:Physical and Life Sciences,336:Physics,866:Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47706\/scientists-create-novel-instrument-probe-thermal-states-extreme-matter-earth","alias_path":"\/article\/47706\/scientists-create-novel-instrument-probe-thermal-states-extreme-matter-earth","body_value":"Scientists at Lawrence Livermore National Laboratory (LLNL) have collaborated with Princeton Plasma Physics Laboratory (PPPL) to design a novel X-ray crystal spectrometer to provide high-resolution measurements of a challenging feature of high energy density (HED) matter produced by National Ignition Facility (NIF) experiments. The work is featured in a paper in the Review\u2026","body_mini_value":"Scientists at Lawrence Livermore National Laboratory (LLNL) have collaborated with Princeton Plasma Physics Laboratory (PPPL) to design a\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/spectrometer_875x500px.jpg?itok=23TLb5wp","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/spectrometer_875x500px.jpg?itok=Lmn2AeRF","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/spectrometer_875x500px.jpg?itok=p3mZ8rIR","alt":"spectrometer_06_23_21"},{"total":5255,"nid":"47701","tid":"866","vid":"tags","category":null,"name":"Science","title":"New research identifies injury-induced molecular changes in chondrocytes, at single-cell level","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/new-research-identifies-injury-induced-molecular-changes-chondrocytes-single-cell","pub_date":"June 21, 2021","terms":"866:Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47701\/new-research-identifies-injury-induced-molecular-changes-chondrocytes-single-cell-level","alias_path":"\/article\/47701\/new-research-identifies-injury-induced-molecular-changes-chondrocytes-single-cell-level","body_value":"Articular cartilage is a connective tissue lining the surfaces of joints. When the cartilage severely wears down, it leads to osteoarthritis (OA), a debilitating disease that affects millions of people globally. The articular cartilage is composed of a dense extracellular matrix (ECM) with a sparse distribution of cells found in healthy cartilage, also known as\u2026","body_mini_value":"Articular cartilage is a connective tissue lining the surfaces of joints. When the cartilage severely wears down, it leads to\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/osteoarthritis%2520cartilage875x500.jpg?itok=pEIUy1xJ","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/osteoarthritis%2520cartilage875x500.jpg?itok=wgEg7Fzw","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/osteoarthritis%2520cartilage875x500.jpg?itok=leEKnAoY","alt":"cartilage"},{"total":5255,"nid":"47696","tid":"161","vid":"tags","category":null,"name":"Engineering","title":"Lawrence Livermore team designs semiconductor switch for next-generation communications","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/lawrence-livermore-team-designs-semiconductor-switch-next-generation-communications","pub_date":"June 18, 2021","terms":"161:Engineering,896:Lasers,891:Lasers and Optical S\u0026T,901:National Ignition Facility and Photon Science,866:Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47696\/lawrence-livermore-team-designs-semiconductor-switch-next-generation-communications","alias_path":"\/article\/47696\/lawrence-livermore-team-designs-semiconductor-switch-next-generation-communications","body_value":"Lawrence Livermore National Laboratory (LLNL) engineers have designed a new kind of laser-driven semiconductor switch that can theoretically achieve higher speeds at higher voltages than existing photoconductive devices. The development of such a device could enable next-generation satellite communication systems capable of transferring more data at a faster rate, and over\u2026","body_mini_value":"Lawrence Livermore National Laboratory (LLNL) engineers have designed a new kind of laser-driven semiconductor switch that can\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/gallium_875x500px%2520copy.jpg?itok=W8Vyji8D","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/gallium_875x500px%2520copy.jpg?itok=kcAIV9xH","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/gallium_875x500px%2520copy.jpg?itok=stIEMS4k","alt":"switch_061821"},{"total":5255,"nid":"47691","tid":"161","vid":"tags","category":null,"name":"Engineering","title":"LLNL\/Tyvak space telescope goes into orbit","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/llnltyvak-space-telescope-goes-orbit","pub_date":"June 17, 2021","terms":"161:Engineering,871:Global Security,881:Physical and Life Sciences,336:Physics,866:Science,551:Space Science Institute,956:Space security","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47691\/llnltyvak-space-telescope-goes-orbit","alias_path":"\/article\/47691\/llnltyvak-space-telescope-goes-orbit","body_value":"Thousands of images of Earth and space have been taken by a compact space imaging payload developed by Lawrence Livermore National Laboratory (LLNL) researchers and its collaborator Tyvak Nano-Satellite Systems. Known as GEOStare2, the payload has two space telescopes that together have taken more than 4,500 pictures for space domain awareness, astronomy and Earth\u2026","body_mini_value":"Thousands of images of Earth and space have been taken by a compact space imaging payload developed by Lawrence Livermore National\u2026","image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_16_9_ratio_at_288x162\/public\/news\/2021-06\/GEOSTARE_II_875x500px.jpg?itok=gIHBv4-I","large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/landscape_thumbnail_320x213\/public\/news\/2021-06\/GEOSTARE_II_875x500px.jpg?itok=lu5RbNf0","xl_large_image":"https:\/\/contenthub.llnl.gov\/sites\/contenthub\/files\/styles\/scaled_3_2_ratio_at_350x233\/public\/news\/2021-06\/GEOSTARE_II_875x500px.jpg?itok=NGpNDshw","alt":" Andromeda galaxy"},{"total":5255,"nid":"47686","tid":"336","vid":"tags","category":null,"name":"Physics","title":"Research highlights techniques for studying materials under extreme conditions","source":"pao","ext_link":"https:\/\/www.llnl.gov\/archive\/news\/research-highlights-techniques-studying-materials-under-extreme-conditions","pub_date":"June 16, 2021","terms":"896:Lasers,891:Lasers and Optical S\u0026T,901:National Ignition Facility and Photon Science,881:Physical and Life Sciences,336:Physics,866:Science","alias":"http:\/\/contenthub.llnl.gov\/\/article\/47686\/research-highlights-techniques-studying-materials-under-extreme-conditions","alias_path":"\/article\/47686\/research-highlights-techniques-studying-materials-under-extreme-conditions","body_value":"The properties of materials under extreme conditions are of key interest to a number of fields, including planetary geophysics, materials science and inertial confinement fusion (ICF). 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