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European Physical Journal C, ISSN 1434-6044, 2010, Volume 70, Issue 3, pp. 823 - 874
Journal Article
Journal of High Energy Physics, ISSN 1126-6708, 2010, Volume 2010, Issue 3
Journal Article
The Journal of High Energy Physics, ISSN 1126-6708, 2014, Volume 2014, Issue 5, pp. 1 - 67
Journal Article
Journal of High Energy Physics, ISSN 1126-6708, 8/2014, Volume 2014, Issue 8, pp. 1 - 65
Journal Article
Journal of High Energy Physics, ISSN 1029-8479, 10/2015, Volume 2015, Issue 2
We study the dilaton action induced by RG flows between holographic CFT fixed points. For this purpose we introduce a general bulk effective theory for the... 
General Relativity and Quantum Cosmology | High Energy Physics | Anomalies in Field and String Theories | Nuclear and High Energy Physics | Theory | AdS-CFT Correspondence | Renormalization Group | High Energy Physics - Theory | Effective field theories
Journal Article
European Physical Journal C, ISSN 1434-6044, 2011, Volume 71, Issue 2, pp. 1512 - 59
Journal Article
Physical Review Letters, ISSN 0031-9007, 2014, Volume 112, Issue 20, pp. 201802(1) - 201802(19)
Journal Article
Journal of High Energy Physics, ISSN 1029-8479, 7/2019, Volume 2019, Issue 7, pp. 1 - 53
The gauge redundancy of quantum gravity makes the definition of local operators ambiguous, as they depend on the choice of gauge or on a ‘gravitational... 
Black Holes | Conformal Field Theory | AdS-CFT Correspondence | Quantum Physics | Quantum Field Theories, String Theory | Classical and Quantum Gravitation, Relativity Theory | Physics | 1/N Expansion | Elementary Particles, Quantum Field Theory | Gravitation | Correlators | Gauge theory | Redundancy | Black holes | Quantum gravity
Journal Article
by Collaboration, The ATLAS and Aad, G and Abat, E and Abdallah, J and Abdelalim, A A and Abdesselam, A and Abdinov, O and Abi, B A and Abolins, M and Abramowicz, H and Acerbi, E and Acharya, B S and Achenbach, R and Ackers, M and Adams, D L and Adamyan, F and Addy, T N and Aderholz, M and Adorisio, C and Adragna, P and Aharrouche, M and Ahlen, S P and Ahles, F and Ahmad, A and Ahmed, H and Aielli, G and Åkesson, P F and Åkesson, T P A and Akimov, A V and Alam, S M and Albert, J and Albrand, S and Aleksa, M and Aleksandrov, I N and Aleppo, M and Alessandria, F and Alexa, C and Alexander, G and Alexopoulos, T and Alimonti, G and Aliyev, M and Allport, P P and Allwood-Spiers, S E and Aloisio, A and Alonso, J and Alves, R and Alviggi, M G and Amako, K and Amaral, P and Amaral, S P and Ambrosini, G and Ambrosio, G and Amelung, C and Ammosov, V V and Amorim, A and Amram, N and Anastopoulos, C and Anderson, B and Anderson, K J and Anderssen, E C and Andreazza, A and Andrei, V and Andricek, L and Andrieux, M-L and Anduaga, X S and Anghinolfi, F and Antonaki, A and Antonelli, M and Antonelli, S and Apsimon, R and Arabidze, G and Aracena, I and Arai, Y and Arce, A T H and Archambault, J P and Arguin, J-F and Arik, E and Arik, M and Arms, K E and Armstrong, S R and Arnaud, M and Arnault, C and Artamonov, A and Asai, S and Ask, S and Åsman, B and Asner, D and Asquith, L and Assamagan, K and Astbury, A and Athar, B and Atkinson, T and Aubert, B and Auerbach, B and Auge, E and Augsten, K and Aulchenko, V M and Austin, N and Avolio, G and Avramidou, R and ... and Partikel- och astropartikelfysik and Skolan för teknikvetenskap (SCI) and KTH and Fysik
Journal of Instrumentation, ISSN 1748-0221, 08/2008, Volume 3, Issue 8, pp. S08003 - S08003
The ATLAS detector as installed in its experimental cavern at point 1 at CERN is described in this paper. A brief overview of the expected performance of the... 
CERN | Electromagnetic and hadronic interactions | Radiation-hard electronics | Muon spectrometer | Accordion geometry | Hall probes | Heavy-ion collisions | Trigger chambers | Bunch-crossings | Proton-proton collisions | Tracking algorithms | Vertex measurement | Forward detectors | Detector control system | Particle identification | Longitudinal segmentation | Carbon-fibre reinforced plastics | Optical fibres | Inner detector | Pixel detectors | Superconducting magnets | Roman Pots | Solenoidal field | Missing transverse energy | Lateral segmentation | Precision-tracking chambers | Calorimetry | Jets | Charged-particle tracking | Fluorinert cooling | Thin-gap chambers | Vertexing algorithms | B-tagging | Minimum-bias events | LHC | Silicon micro-strip detectors | Pile-up | Taus | High-level trigger | ATLAS | Impact parameter measurements | Bandwidth | Event filter | Drift tubes | Liquid argon | Resistive-plate chambers | Muons | Leptons | Time-over-threshold | Trigger and data acquisition | Processor farm | Magnetic field measurements | Photons | Toroidal field | Optical alignment systems | Forward calorimetry | Cerenkov light | Scintillator tiles | Transition radiation | Zero-degree calorimetry | Sampling calorimeters | Accelerator | Electrons | PERFORMANCE | END-CAP CALORIMETER | COLD MASS | BARREL TOROID MAGNET | INSTRUMENTS & INSTRUMENTATION | b-tagging | LIQUID ARGON CALORIMETER | DRIFT-TUBE CHAMBERS | SEMICONDUCTOR TRACKER | LUMINOSITY MEASUREMENT | CONSTRUCTION | Physics | High Energy Physics - Experiment | Fysik | Subatomär fysik | Physical Sciences | Subatomic Physics | Naturvetenskap | Natural Sciences
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