Scientists from the Large Hadron Collider suggested that a new particle even more intriguing than the Higgs boson could have been detected at the American Association for the Advancement of Science’s annual meeting in San Jose. Large Hadron Collider, (LHC), is the most powerful and largest particle collider on Earth. It also happens to be the biggest single machine in the universe. CERN (European Organization for Nuclear Research) built it. It is located in the tunnel 17 mile (27 km), which runs around the French-Swiss border, near Geneva. Its purpose is to enable physicists test various theories about particle physics. The Large Hadron Collider’s welder establishes interconnections among dipole magnets. CERN Image: A stronger accelerator. The accelerator will be back online in March 2015, after an upgrade. This extra power will likely force the appearance of the first supersymmetric particle in the accelerator – the gluino. Scientists would be able to better understand what “dark matter” actually is. The accelerator’s initial 3-year-old run ended in September 2012, when the LHC beams were turned off. It had been almost two years now. CERN reports that hundreds of engineers and technicians have worked to strengthen the LHC in preparation for the LHC’s higher energy. The energy of particles collisions at the LHC will increase to 13 TeV (6.5% per beam) compared with 2012. (8 TeV). Professor Beate Heinemann spoke on behalf of the Atlas experiment. This is one the major particle detectors at LHC. It may seem like summer is a little difficult, but it could be late summer if we are really fortunate.” We hope we are now near the threshold of finding an alternative world such as antimatter. Antimatter was discovered in the first century. Perhaps we will find supersymmetric matter soon.” Large Hadron Collider, the largest and most powerful particle accelerator in the world. Image: CERN. What exactly is supersymmetry? The addition of the Standard Model to string theory is supersymmetry. It’s a theory which suggests that the Universe was made with the same number theoretical “superparticles”. Supersymmetry would imply that the Universe contains at least twice the number of particles if it is true. 11, Supersymmetry could create multiple copies, as there are many dimensions. Many scientists are convinced that supersymmetry solves many inconsistencies within the Standard Model. Suzy, or supersymmetry as it is also called, fills in some holes in the model. It would basically explain nature’s unity of forces. Suzy believes that every particle will have at least one major partner. For example, a photon might have a companion called a Phottino and a quark, which are the building blocks of protons and neutrons, would have a Quark. The LHC’s latest upgrade failed to detect superparticles within the debris, which was colliding matter. Scientists were disappointed. Theorists now hope that the accelerator with a higher power will provide evidence for Susy. Upgraded LHC offers twice the energy. Many theorists believe that the gluino will be visible in enough numbers to allow it to be identified. The superpartner of the gluon is called the gluino. The gluon is responsible for gluing quarks inside protons and neutrons. Researchers will not have direct access to the gluinos. The researchers will monitor its decay. This should include the most stable and lightest superparticles, the neutrinos. Researchers believe that neutralinos make up dark matter. Professor Heinemann stated, “This would rock and roll the world.” It’s exciting for me more than the Higgs. Video: Large Hadron Collider
In 2015, Higgs boson might be more interesting than a new particle

