Oman Daily Observer

Major upgrade to boost capacity of CERN’S giant particle smasher

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GENEVA: A major upgrade began on Friday for the world’s most powerful proton smasher to increase the number of particle collisions inside the Large Hadron Collider and help further explore the fundamenta­l building blocks of the universe.

The work involves heavy civil engineerin­g at the LHC’S two main sites in Switzerlan­d and France which are run by Europe’s physics lab CERN, that will allow it to operate in a high-luminosity mode from 2026.

“By 2026, this major upgrade will have considerab­ly improved the performanc­e of the LHC, by increasing the number of collisions in the large experiment­s and thus boosting the probabilit­y of the discovery of new physics phenomena,” CERN said.

The aim is increase ten-fold the amount of data which can be picked up by the LHC, which is housed in a 27 kilometre ring-shaped tunnel buried more than 100 metres undergroun­d that runs beneath the border of Switzerlan­d and France.

The powerful accelerato­r, which began operating in 2010, smashes high-energy protons into each other at velocities near the speed of light.

These collisions generate new particles, giving physicists an unpreceden­ted look at the laws of nature in the hope of better understand­ing particles and matter.

Until now, the LHC has been able to generate nearly a billion collisions per second but the so-called high-luminosity upgrade will allow it to increase the collision rate, thereby allowing for the accumulati­on of 10 times more data between 2026 and 2036.

“The High-luminosity LHC will extend the LHC’S reach beyond its initial mission, bringing new opportunit­ies for discovery, measuring the properties of particles such as the Higgs Boson with greater precision, and exploring the fundamenta­l constituen­ts of the universe ever more profoundly,” said CERN Director-general Fabiola Gianotti.

In 2012, the LHC was used to prove the existence of the Higgs Boson — also dubbed the God particle — which has allowed scientists to make great progress in understand­ing how particles acquire mass. A year later, two of the scientists who had theorised the particle’s existence nearly five decades earlier, won the Nobel physics prize for its discovery.

In the works since 2011, the upgrade will allow the LHC to start producing data in high-luminosity mode from 2026.

The project will involve the replacemen­t of high-tech components along 1.2 kilometres of the machine, such as magnets, collimator­s and radiofrequ­ency cavities.

It will also see the constructi­on of new buildings, shafts, caverns and undergroun­d galleries, as well as tunnels and halls to house the new cryogenic equipment, as well as power supplies and cooling and ventilatio­n kit.

 ?? — Reuters ?? The Globe of Science exhibition hall and a magnet are pictured before a news conference to launch the civil engineerin­g works for the High Luminosity LHC Project (HL-LHC) at the European Organizati­on for Nuclear Research (CERN) in Meyrin near Geneva,...
— Reuters The Globe of Science exhibition hall and a magnet are pictured before a news conference to launch the civil engineerin­g works for the High Luminosity LHC Project (HL-LHC) at the European Organizati­on for Nuclear Research (CERN) in Meyrin near Geneva,...

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