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Arif Ozturk

Publications and source records attributed to Arif Ozturk.

3 recordsLinked to original sources

μTRISTAN and LHC/Tevatron/FCC/SppC Based Antimuon-Hadron Colliders

Recently, the construction of {μ^+}{e^-} and {μ^+}{μ^+} colliders, μTRISTAN, at KEK has been proposed. We argue that the construction of a similar {μ^+} ring tangential to LHC/Tevatron/FCC/SppC will give an opportunity to realize {μ^+}p and {μ^+}A collisions at multi-TeV scale center-of-mass energies. In this paper the main parameters of proposed colliders have been studied. It is shown that sufficiently high luminosities can be achieved for all proposals under consideration: L exceeds {10^{33} cm^{-2}s^{-1}} for {μ^+}p colliders and {10^{30} cm^{-2}s^{-1}} for {μ^+}A colliders. Certainly, proposed colliders will provide huge potential for both SM (especially QCD basics) and BSM physics searches.

hep-ph↗

Two options for muon-proton collider at FNAL

We discuss a possibility to construct multi-TeV scale μp collider at FNAL. Main advantage of this project is existence of two ring tunnels tangential to each other. There are two possible options, namely, muons in main injector with protons in Tevatron ring and vice versa. Two choices are considered for center-of-mass energy values: 2.57 TeV using 8 T bending magnets and 5.10 TeV with 16 T magnets. It is shown that luminosity values exceeding 1033 cm-2s-1 can be achieved. It is obvious that μ-FNAL will provide unique potential for both SM (especially QCD basics) and BSM searches, far beyond the eRHIC and LHeC capacities.

physics.acc-ph↗

Main Parameters of the MC and FCC/SppC/LHC/RHIC based Muon-Nucleus Colliders

Construction of future Muon Collider (or dedicated mu-ring) tangential to nucleus colliders will give opportunity to realize mu-A collisions at multi-TeV center of mass energies at a luminosity of order of 10^29-10^30 cm^-2s^-1. Obviously, such colliders will essentially enlighten fundamentals of strong interactions from quark to nucleus levels as well as clarify QCD basics. This paper is devoted to estimation of main parameters of the FCC, SppC, HL-LHC, HE-LHC and RHIC based muon-nucleus collider proposals by the software AloHEP.

physics.acc-ph↗