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Accelerators & Beams
Is a meta-term.
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Accelerators & Beams
Term
Metadata
Accelerators & Beams
More specific terms
NT1
↓
Accelerator applications
►
▼
NT2
↓
Materials analysis & modification by accelerators
NT2
↓
Medical applications of accelerators
NT2
↓
Security applications of accelerators
NT2
↓
Transmutation & power generation with accelerators
NT1
↓
Accelerator subsystems
►
▼
NT2
↓
Alignment & survey
NT2
↓
Infrastructures & instrumentation
NT2
↓
Lasers
►
▼
NT3
↓
Frequency combs & self-phase locking
NT3
↓
Laser applications
NT3
↓
Laser dynamics
NT3
↓
Laser spectroscopy
NT3
↓
Laser theory
NT3
↓
Laser-system design
NT3
↓
Spatial profiles of optical beams
NT2
↓
Machine protection
NT2
↓
Power supplies
NT2
↓
Radiation monitoring & safety
NT2
↓
Reliability & operability
NT2
↓
Targets
NT2
↓
Timing & synchronization
NT1
↓
Accelerators & storage rings
►
▼
NT2
↓
High-energy accelerators & colliders
►
▼
NT3
↓
Circular accelerators
►
▼
NT4
↓
Fixed-field alternating gradient accelerators
NT4
↓
Storage rings
NT3
↓
Colliders
►
▼
NT4
↓
Hadron colliders
NT4
↓
Lepton colliders
NT4
↓
Lepton-hadron colliders
NT4
↓
Linear colliders
NT3
↓
Linear accelerators
►
▼
NT4
↓
Conventional linacs
NT4
↓
Energy recovery linacs
NT3
↓
Muon accelerators & neutrino factories
NT2
↓
Low- & intermediate-energy accelerators
►
▼
NT3
↓
Cyclotrons
NT3
↓
Electrostatic accelerators
NT3
↓
High-intensity accelerators
NT3
↓
Neutron spallation facilities
NT3
↓
Rare-isotope facilities
NT2
↓
Plasma acceleration & new acceleration techniques
►
▼
NT3
↓
Fast particle effects in plasmas
NT3
↓
Free-electron laser acceleration
NT3
↓
Laser driven electron acceleration
NT3
↓
Laser driven ion acceleration
NT3
↓
Laser wakefield acceleration
NT3
↓
Particle acceleration in plasmas
NT3
↓
Radiation pressure acceleration
NT3
↓
Target normal sheath acceleration
NT2
↓
Pulsed-power accelerators
NT2
↓
Synchrotron radiation & free-electron lasers
►
▼
NT3
↓
Free-electron lasers
NT3
↓
Radiation from moving charges
NT3
↓
Synchrotron radiation facilities
NT3
↓
Undulators & wigglers
NT1
↓
Advanced accelerator test facilities
NT1
↓
Beam dynamics
►
▼
NT2
↓
Beam code development & simulation techniques
NT2
↓
Beam countermeasures
NT2
↓
Beam impedance
NT2
↓
Beam instabilities
NT2
↓
Beam optics
►
▼
NT3
↓
Beam optics correction schemes
NT3
↓
Beam optics transport
NT3
↓
Lattices in beam optics
NT2
↓
Beam processes
NT2
↓
High intensity beam dynamics
►
▼
NT3
↓
Beam cooling
NT3
↓
Beam halos
NT3
↓
Incoherent beam instabilities
NT3
↓
Space charge in beams
NT2
↓
Low-energy multiple-particle dynamics
NT2
↓
Nonlinear beam dynamics
►
▼
NT3
↓
Beam resonances
NT3
↓
Beam tracking
NT3
↓
Higher order beam dynamics
NT2
↓
Relativistic multiple-particle dynamics
NT2
↓
Single-particle dynamics
NT1
↓
Beam techniques
►
▼
NT2
↓
Accelerator/storage ring control systems
NT2
↓
Beam control
►
▼
NT3
↓
Beam cooling
NT3
↓
Beam polarization
NT3
↓
Damping rings
NT2
↓
Beam diagnostics
NT2
↓
Beam injection, extraction & transport
NT2
↓
Beam loss
NT2
↓
Collimation
NT2
↓
Secondary beams
NT1
↓
Cryogenics & vacuum technology
►
▼
NT2
↓
Cryogenic technology
NT2
↓
Vacuum technology
NT1
↓
Electromagnetic field calculations
►
▼
NT2
↓
Room-temperature magnet calculations
NT2
↓
Superconducting magnet calculations
NT1
↓
Particle-beam sources
►
▼
NT2
↓
Electron sources
NT2
↓
Proton & ion sources
NT1
↓
Radio frequency techniques
►
▼
NT2
↓
Radio frequency calculations
NT2
↓
Radio frequency power sources
NT2
↓
Room temperature RF
NT2
↓
Superconducting RF
Date of creation
14-Sep-2018
Modified
15-Sep-2018
Accepted term
14-Sep-2018
Descendant terms
101
ARK
ark:/99152/t30nkp84k4zvol
More specific terms
10
Alternative terms
0
Related terms
0
Notes
0
Metadata
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Central terms
Beam dynamics
Accelerator subsystems
Beam techniques
Accelerators & storage rings
Electromagnetic field calculations
Radio frequency techniques
Accelerator applications
Particle-beam sources
Cryogenics & vacuum technology
Advanced accelerator test facilities