Skip to main navigation
Skip to search
Skip to main content
VTT's Research Information Portal Home
Search content at VTT's Research Information Portal
Home
Profiles
Research output
Projects
Datasets
Research units
Research Infrastructures
Activities
Prizes
Press/Media
Impacts
CMS physics technical design report: Volume II: physics performance
Eija Tuominen
, CMS Collaboration
Not published at VTT
Helsinki Institute of Physics (HIP)
Research output
:
Contribution to journal
›
Article
›
Scientific
761
Link opens in a new tab
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'CMS physics technical design report: Volume II: physics performance'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Large Hadron Collider
100%
Technical Design
100%
Physics Performance
100%
Benchmarking Method
75%
Heavy-ion Collisions
50%
Higgs Particle
50%
New Physics
50%
Supersymmetric
50%
Parameter Space
25%
Plethora
25%
Diffraction
25%
Physicists
25%
Misalignment
25%
Higgs Boson
25%
Muon
25%
Model Particle
25%
Physics-based
25%
Wand
25%
CMS Experiment
25%
Beyond Standard Model
25%
Particle Physics
25%
Luminosity
25%
Collision Energy
25%
Decay Channels
25%
Integrated Luminosity
25%
Pp Collisions
25%
Miscalibration
25%
Quarkonium
25%
Theories beyond the Standard Model
25%
Electroweak
25%
B Meson
25%
Technicolor
25%
New Vectors
25%
Supersymmetry
25%
Searches for New Physics
25%
Full Simulation
25%
Higgs Search
25%
Little Higgs Models
25%
Higgs Properties
25%
Higgs Discovery
25%
Chapter 26
25%
Top Quark
25%
B-Physics
25%
Electroweak Physics
25%
Vector Bosons
25%
Higgs Decays
25%
INIS
performance
100%
physics
100%
volume
100%
design reports
100%
standard model
42%
decay
35%
higgs bosons
35%
benchmarks
28%
cern lhc
28%
particles
21%
tev range
21%
supersymmetry
21%
simulation
14%
data
14%
production
14%
luminosity
14%
heavy ion reactions
14%
tools
7%
energy
7%
operation
7%
electrons
7%
space
7%
coverings
7%
jets
7%
dimensions
7%
precision
7%
symmetry
7%
photons
7%
collisions
7%
vectors
7%
start-up
7%
diffraction
7%
muons
7%
models (particle)
7%
cms experiment
7%
qcd
7%
proton-proton interactions
7%
bosons
7%
top quarks
7%
higgs model
7%
quarkonium
7%
b mesons
7%
supersymmetric particles
7%
Physics
Physics
100%
Standard Model
41%
Large Hadron Collider
33%
Higgs Boson
25%
Ionic Collision
16%
Muon
8%
Particle Physics
8%
Quantum Chromodynamics
8%
Supersymmetry
8%
Physics beyond the Standard Model
8%
Meson
8%
Vector Boson
8%