Fraud Blocker Skip to main content

Cern Collection (page 2)

"CERN: Unveiling the Secrets of the Universe through Particle Tracks and Proton Collisions" Step into the fascinating world of particle physics at CERN

Background imageCern Collection: Proton collision C014 / 1803

Proton collision C014 / 1803
Particle tracks from a proton-proton collision seen by the ATLAS (a toroidal LHC apparatus) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Proton collision C014 / 1816

Proton collision C014 / 1816
Particle tracks from a proton-proton collision seen by the ATLAS (a toroidal LHC apparatus) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Electron-positron collision C014 / 1799

Electron-positron collision C014 / 1799
Two sets of particle tracks from electron-positron collisions seen by the ALEPH (Apparatus for LEP physics at CERN) detector at CERN (the European particle physics laboratory) near Geneva

Background imageCern Collection: Proton collision C014 / 1808

Proton collision C014 / 1808
Particle tracks from a proton-proton collision seen by the ATLAS (a toroidal LHC apparatus) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Proton collision C014 / 1807

Proton collision C014 / 1807
Particle tracks from a proton-proton collision seen by the LHCb (large hadron collider beauty) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Proton collision C014 / 1798

Proton collision C014 / 1798
Cut-away view of the ATLAS (a toroidal LHC apparatus) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland, showing particle tracks from a proton-proton collision

Background imageCern Collection: Proton collision C014 / 1806

Proton collision C014 / 1806
Particle tracks from a proton-proton collision seen by the CMS (compact muon solenoid) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Proton collision C014 / 1815

Proton collision C014 / 1815
Particle tracks from a proton-proton collision seen by the LHCb (large hadron collider beauty) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Proton collision C014 / 1794

Proton collision C014 / 1794
Particle tracks from a proton-proton collision seen by the CMS (compact muon solenoid) detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Electron-positron collision

Electron-positron collision
Particle tracks from an electron-positron collision seen by the L3 detector at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: Guido Tonelli, CERN physicist

Guido Tonelli, CERN physicist. Guido Tonelli (born 1950) is an Italian physicist who is one of the leaders of the Compact Muon Solenoid (CMS) project

Background imageCern Collection: Particle collision, artwork C017 / 8032

Particle collision, artwork C017 / 8032
Particle collision. Computer artwork of particles colliding (centre) and splitting to produce smaller particles (smaller spheres)

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6893

Higgs boson research, ATLAS detector C013 / 6893
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6894

Higgs boson research, ATLAS detector C013 / 6894
Higgs boson research. Graphic of a transverse section through a detector showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6891

Higgs boson research, ATLAS detector C013 / 6891
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6889

Higgs boson research, ATLAS detector C013 / 6889
Higgs boson research. Graphic of a transverse section through a detector showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6890

Higgs boson research, ATLAS detector C013 / 6890
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, ATLAS detector C013 / 6888

Higgs boson research, ATLAS detector C013 / 6888
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, CMS detector C013 / 6887

Higgs boson research, CMS detector C013 / 6887
Higgs boson research. Graphic of a longitudinal section through a detector showing a collision event recorded during the search for the Higgs boson

Background imageCern Collection: Peter Higgs, British physicist C013 / 6881

Peter Higgs, British physicist C013 / 6881
Peter Higgs (born 1929), British theoretical physicist, at the Higgs boson discovery announcement, 4th July 2012, at CERN (the European particle physics laboratory)

Background imageCern Collection: Higgs boson research, CMS detector C013 / 6885

Higgs boson research, CMS detector C013 / 6885
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, CMS detector C013 / 6886

Higgs boson research, CMS detector C013 / 6886
Higgs boson research. Graphic of a transverse section through a detector showing a collision event recorded during the search for the Higgs boson

Background imageCern Collection: Englert and Higgs at CERN C013 / 6880

Englert and Higgs at CERN C013 / 6880
Francois Englert (born 1932, left) and Peter Higgs (born 1929, right), Belgian and British theoretical physicists, at the Higgs boson discovery announcement, 4th July 2012

Background imageCern Collection: Higgs boson research, CMS detector C013 / 6884

Higgs boson research, CMS detector C013 / 6884
Higgs boson research. Graphic of a longitudinal section through a detector showing a collision event recorded during the search for the Higgs boson

Background imageCern Collection: Higgs boson research, CMS detector C013 / 6882

Higgs boson research, CMS detector C013 / 6882
Higgs boson research. 3D computer graphic showing one of the numerous particle collision events recorded during the search for the Higgs boson

Background imageCern Collection: Francois Englert, Belgian physicist C013 / 6879

Francois Englert, Belgian physicist C013 / 6879
Francois Englert (born 1932), Belgian theoretical physicist, at the Higgs boson discovery announcement, 4th July 2012, at CERN (the European particle physics laboratory)

Background imageCern Collection: Higgs boson discovery announcement C013 / 6877

Higgs boson discovery announcement C013 / 6877
Higgs boson discovery announcement, 4th July 2012. Joe Incandela, spokesperson for the CMS (Compact Muon Solenoid) experiment

Background imageCern Collection: Higgs boson discovery announcement C013 / 6875

Higgs boson discovery announcement C013 / 6875
Higgs boson discovery announcement, 4th July 2012. Joe Incandela, spokesperson for the CMS (Compact Muon Solenoid) experiment

Background imageCern Collection: Higgs boson discovery announcement C013 / 6876

Higgs boson discovery announcement C013 / 6876
Higgs boson discovery announcement, 4th July 2012. Joe Incandela, spokesperson for the CMS (Compact Muon Solenoid) experiment

Background imageCern Collection: Grid computer farm

Grid computer farm
Grid supercomputers. Fish-eye lens view of a room packed with computers, forming a " PC farm" with immense processing power

Background imageCern Collection: Main computer at CERN

Main computer at CERN
The main computer at the CERN research centre, Geneva. In the foreground are the tape drives that store programs and record data from the various detectors at the particle physics laboratories

Background imageCern Collection: Grid computer farm

Grid computer farm
Grid supercomputers. Fish-eye lens view of a room packed with supercomputers, forming a " PC farm" with immense processing power

Background imageCern Collection: Technician in OPAL detector, CERN

Technician in OPAL detector, CERN
A technician works on one of two end caps of the OPAL detector at CERN, the European centre for particle physics near Geneva. OPAL is one of 4 giant particle detectors at the LEP collider

Background imageCern Collection: ATHENA antimatter experiment

ATHENA antimatter experiment
ATHENA antimatter laboratory. Technician working on the ATHENA experiment at CERN, Geneva, Switzerland. ATHENA is designed to create antihydrogen, the antimatter form of hydrogen

Background imageCern Collection: Supersymmetric particle production

Supersymmetric particle production. Computer artwork showing the results of a collision between a quark (pink) and an antiquark (blue)

Background imageCern Collection: ATLAS detector module

ATLAS detector module under construction. ATLAS is a detector at the Large Hadron Collider (LHC) at CERN, the European particle physics laboratory near Geneva, Switzerland

Background imageCern Collection: Simulation of Higgs boson production

Simulation of Higgs boson production

Background imageCern Collection: The OPAL detector at CERN

The OPAL detector at CERN
A technician works on one of two end caps of the OPAL detector at CERN, the European centre for particle physics near Geneva. OPAL is one of 4 giant particle detectors at the LEP collider

Background imageCern Collection: Antihydrogen experiment at CERN

Antihydrogen experiment at CERN
Antimatter experiment in which antihydrogen may be produced for the first time. Antiprotons travel along the large pipe at centre, part of the Low- Energy Antiproton Ring (LEAR) accelerator

Background imageCern Collection: Jets of particles from matter / antimatter collision

Jets of particles from matter / antimatter collision
Matter/antimatter particle collision. Computer display of jets of particles created when matter and antimatter collide & annihilate in a particle accelerator at CERN

Background imageCern Collection: LEP particle collider, CERN

LEP particle collider, CERN
View of one of the acceleration sections at LEP, the Large Electron-Positron collider. Located at CERN, the European centre for particle physics near Geneva

Background imageCern Collection: ALICE detector magnets

ALICE detector magnets during construction. ALICE is " A Large Ion Collider Experiment" for the Large Hadron Collider (LHC), CERN (the European particle physics laboratory) near Geneva

Background imageCern Collection: CMS detector

CMS detector being built. The CMS (Compact Muon Solenoid) is a detector at the LHC (Large Hadron Collider), at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: LHC tunnel, CERN

LHC tunnel, CERN
LHC tunnel, composite image. Safety supervisor riding a bicycle along the LHC (large hadron collider) tunnel at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imageCern Collection: CERN radio frequency accelerator

CERN radio frequency accelerator. Part of the Large Electron-Positron Collider (LEP) from CERN. This was one of the largest and most powerful particle accelerators

Background imageCern Collection: Composite image of Large Hadron Collider

Composite image of Large Hadron Collider
Large Hadron Collider. Composite image showing how the proposed Large Hadron Collider (LHC) accelerator might appear in the existing LEP tunnel at CERN



All Professionally Made to Order for Quick Shipping

"CERN: Unveiling the Secrets of the Universe through Particle Tracks and Proton Collisions" Step into the fascinating world of particle physics at CERN, where groundbreaking discoveries are made every day. Witness the mesmerizing trails left behind by particles in our quest to understand the fundamental building blocks of our universe. In one remarkable event, captured by the ATLAS detector, we delve into a proton collision that occurred in 1797. This historic moment paved the way for future breakthroughs and set us on an extraordinary journey towards unraveling nature's mysteries. Among these milestones is the awe-inspiring Higgs boson event, again observed by ATLAS detector but this time in modern times. The simulation showcases how this elusive particle was produced, shedding light on its role in giving mass to other particles. Marvel at a mock-up of CERN's crown jewel - the Large Hadron Collider (LHC). This colossal machine propels particles to unimaginable speeds before they collide with tremendous force, enabling scientists to explore uncharted territories within particle physics. The CMS detector stands as another testament to human ingenuity at CERN. Its intricate design captures fleeting moments when particles interact, providing invaluable insights into their behavior and properties. Artwork depicting lead ion collisions reminds us of CERN's continuous pursuit of knowledge. These experiments push boundaries further than ever before, revealing secrets hidden deep within atomic nuclei. Computer-generated art transports us inside ATLAS detector itself - a marvel of engineering that tirelessly sifts through vast amounts of data for traces of new phenomena waiting to be discovered. And amidst all these scientific endeavors lies an element of humor - a caricature featuring renowned physicist Brian Cox serves as a reminder that even complex research can have lighthearted moments along the way. CERN remains at forefront not only scientifically but artistically too; captivating artwork brings life to otherwise abstract concepts and fuels imagination about what lies beyond our current understanding.