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Husnu Aksakal

Publications and source records attributed to Husnu Aksakal.

3 recordsLinked to original sources

Scenarios for LHC/FCC Based Gamma-Proton Colliders

The advantage of the linac-ring type electron proton collider is that it allows for the straightforward construction of $γ$p collider. In a $γ$p collider high energy photons can be generated from Compton backscattering of laser photons off electrons from a linear accelerator. In this study main parameters of photon-proton colliders based on some future electron linear accelerator projects and protons supplied form LHC or FCC are evaluated.

physics.acc-ph

A search for b(c) quark pdf uncertainties at TeV scale ep collider

We discuss c\bar{c} and b\bar{b} pair productions at ep collider for studying extremely small x(g) region. It has been shown that Large Hadron electron Collider (LHeC) has a reach of about x(g)>10^{-6}. The aim of this work is to show that the PDF uncertainties in the heavy flavour production. Maximum difference of cross section between PDFs 60% has been found in the process of ep\rightarrow eq\bar{q}X.

hep-ph

$2\times250$ GeV CLIC $γγ$ Collider Based on its Drive Beam FEL

CLIC is a linear $e^+e^-$ ($γγ$) collider project which uses a drive beam to accelerate the main beam. The drive beam provides RF power for each corresponding unit of the main linac through energy extracting RF structures. CLIC has a wide range of center-of-mass energy options from 150 GeV to 3 TeV. The present paper contains optimization of Free Electron Laser (FEL) using one bunch of CLIC drive beam in order to provide polarized light amplification using appropriate wiggler and luminosity spectrum of $γγ$ collider for $E_{cm}$=0.5 TeV. Then amplified laser can be converted to a polarized high-energy $γ$ beam at the Conversion point (CP-prior to electron positron interaction point) in the process of Compton backscattering. At the CP a powerful laser pulse (FEL) focused to main linac electrons (positrons). Here this scheme described and it is show that CLIC drive beam parameters satisfy the requirement of FEL additionally essential undulator parameters has been defined. Achievable $γγ$ luminosity is above $10^{34}$.

physics.acc-ph