MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing particles produced in high-energy Large Hadron Collider (LHC) collisions. Here we update our previous search for magnetic monopoles in Run 2 using the full trapping detector with almost four times more material and almost twice more integrated luminosity. For the first time at the LHC, the data were interpreted in terms of photon-fusion monopole direct production in addition to the Drell-Yan-like mechanism. The MoEDAL trapping detector, consisting of 794 kg of aluminum samples installed in the forward and lateral regions, was exposed to 4.0 fb−1 of 13 TeV proton-proton collisions at the LHCb interaction point and analyzed by searching for induce...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
The MoEDAL experiment is designed to search for magnetic monopoles and other highly-ionising particl...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of long-lived highly ionizing particles produ...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of long-lived highly ionizing particles produ...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
The MoEDAL experiment is designed to search for magnetic monopoles and other highly-ionising particl...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
MoEDAL is designed to identify new physics in the form of stable or pseudostable highly ionizing par...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of long-lived highly ionizing particles produ...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
MoEDAL is designed to identify new physics in the form of long-lived highly ionizing particles produ...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...
The MoEDAL experiment is designed to search for magnetic monopoles and other highly-ionising particl...
We update our previous search for trapped magnetic monopoles in LHC Run 2 using nearly six times mor...