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Tool used in surface science
High resolution electron energy loss spectroscopy (HREELS) is a tool used in surface science. The inelastic scattering of electrons from surfaces is utilized
High resolution electron energy loss spectroscopy
High_resolution_electron_energy_loss_spectroscopy
Form of microscopy using an electron beam
Electron energy loss spectroscopy (EELS) is a form of electron microscopy in which a material is exposed to a beam of electrons with a known, narrow range
Electron energy loss spectroscopy
Electron_energy_loss_spectroscopy
Type of microscope with electrons as a source of illumination
high-energy electron diffraction (RHEED) and reflection high-energy loss spectroscopy (RHELS). Another variation is spin-polarized low-energy electron microscopy
Electron_microscope
Study involving matter and electromagnetic radiation
complex refractive index. Electron energy loss spectroscopy in transmission electron microscopy. Electron phenomenological spectroscopy measures the physicochemical
Spectroscopy
Spin-polarized electron energy loss spectroscopy or SPEELS is a technique mainly used to measure the dispersion relation of the collective excitations
Spin-polarized electron energy loss spectroscopy
Spin-polarized_electron_energy_loss_spectroscopy
Analytical technique in chemistry
Analysis (ESCA), Electron energy loss spectroscopy (EELS), Ultraviolet photoelectron spectroscopy (UPS), and Auger electron spectroscopy (AES). These analytical
Electron_spectroscopy
Lithographic technique that uses a scanning beam of electrons
of electron-beam lithography is that it can draw custom patterns (direct-write) with sub-10 nm resolution. This form of maskless lithography has high resolution
Electron-beam_lithography
Spectroscopic technique
of any surface. It belongs to the family of photoemission spectroscopies in which electron population spectra are obtained by irradiating a material with
X-ray photoelectron spectroscopy
X-ray_photoelectron_spectroscopy
Imaging and diffraction using electrons that pass through samples
Electron microscope Cryogenic electron microscopy Electron diffraction Electron energy loss spectroscopy (EELS) Energy filtered transmission electron
Transmission electron microscopy
Transmission_electron_microscopy
Imaging mode of electron microscopes
High-resolution transmission electron microscopy is an imaging mode of specialized transmission electron microscopes that allows for direct imaging of
High-resolution transmission electron microscopy
High-resolution_transmission_electron_microscopy
Type of electron microscope
transmission electron microscopy (STEM). Since 2016, there has been growing interest in the use of transmission-mode SEM for Electron Energy Loss Spectroscopy (EELS)
Scanning_electron_microscope
Scanning microscopy using thin samples and transmitted electrons
imaging, and spectroscopic mapping by energy dispersive X-ray (EDX) spectroscopy, or electron energy loss spectroscopy (EELS). These signals can be obtained
Scanning transmission electron microscopy
Scanning_transmission_electron_microscopy
Technique to study materials that have unpaired electrons
Electron paramagnetic resonance (EPR) or electron spin resonance (ESR) spectroscopy is a method for studying materials that have unpaired electrons. The
Electron paramagnetic resonance
Electron_paramagnetic_resonance
Measurement of infrared radiation's interaction with matter
Another method is electron energy loss spectroscopy (EELS), in which the energy absorbed is provided by an inelastically scattered electron rather than a
Infrared_spectroscopy
Electrons generated as ionization products
radiation). This radiation can be in the form of ions, electrons, or photons with sufficiently high energy, i.e. exceeding the ionization potential. Photoelectrons
Secondary_electrons
Quasiparticle in condensed matter physics
of high-resolution electron energy-loss spectroscopy. The plasmon is a quantized vibration of the charge density in a material where all electron bands
Pines'_demon
Industrial process for ammonia production
by X-ray photoelectron spectroscopy (XPS), high-resolution electron energy loss spectroscopy (HREELS) and infrared spectroscopy. On the basis of these
Haber_process
resolution electron energy loss spectroscopy HREM – High-resolution electron microscopy HRTEM – High-resolution transmission electron microscopy HI-ERDA
List of materials analysis methods
List_of_materials_analysis_methods
Analytical technique used specifically in the study of surfaces
Auger electron spectroscopy (AES; pronounced [oʒe] in French) is a common analytical technique used specifically in the study of surfaces and, more generally
Auger_electron_spectroscopy
Scanning electron microscopy technique
be combined with energy-dispersive X-ray spectroscopy (EDS), cathodoluminescence (CL), and wavelength-dispersive X-ray spectroscopy (WDS) for advanced
Electron backscatter diffraction
Electron_backscatter_diffraction
Bending of electron beams due to electrostatic interactions with matter
structure and bonding through electron energy loss spectroscopy, and studies of the electrostatic potential through electron holography; this list is not
Electron_diffraction
Laboratory technique
To obtain high-resolution NMR spectra, solid substances are usually dissolved to make liquid solutions, although solid-state NMR spectroscopy is also possible
Nuclear magnetic resonance spectroscopy
Nuclear_magnetic_resonance_spectroscopy
Study of matter through the use of microwaves
low-resolution spectroscopy accounts for the "spreading effect" and allows for correction. While not being as precise as high-resolution spectroscopy, low-resolution
Microwave_spectroscopy
Technique to characterize materials using X-ray radiation
X-ray spectroscopy is a general term for several spectroscopic techniques for characterization of materials by using x-ray radiation. When an electron from
X-ray_spectroscopy
Imaging technique for solid chemical analysis
combining an electron microscope and an energy loss spectrometer. A patent application was filed in 1944. Electron energy loss spectroscopy is very good
Electron_probe_microanalysis
Elementary particle with negative charge
they are known as beta particles. Electrons can be created through beta decay of radioactive isotopes and in high-energy collisions, for instance, when cosmic
Electron
Concept relating to waves and signals
that produce an energy spectrum are alpha-particle spectroscopy, electron energy loss spectroscopy, and mass-analyzed ion-kinetic-energy spectrometry. Oscillatory
Spectrum_(physical_sciences)
Tomography technique
twinned palladium nanoparticle. The combination of AET with electron energy loss spectroscopy (EELS) allows for investigation of electronic states in addition
Electron_tomography
Lithography using 13.5 nm UV light
dump, and that energy is lost. For a high-power FEL, this becomes a major problem because of high average electron-beam current. Energy recovery linac
EUV_lithography
Experimental technique in physics
techniques, such as electron spin resonance (ESR or EPR) and, more closely, nuclear magnetic resonance (NMR). Muon spin spectroscopy is an atomic, molecular
Muon_spin_spectroscopy
Spectroscopic technique
a major leap for high-resolution spectrographs and effectively mitigated early issues with stray light. The name "Raman spectroscopy" typically refers
Raman_spectroscopy
Device used to perform different forms of electron spectroscopy and electron microscopy
An electron spectrometer is a device used to perform different forms of electron spectroscopy and electron microscopy. This requires analyzing the energy
Electron_spectrometer
Particle accelerator designed to produce intense x-ray beams
specialized particle accelerators, typically accelerating electrons. Once the high-energy electron beam has been generated, it is directed into auxiliary
Synchrotron_light_source
Type of mathematical relation
across, i.e. too small for UV spectroscopy. Although electron spectroscopy has poorer energy resolution than light spectroscopy, data on properties in visible
Kramers–Kronig_relations
higher voltage operations, including higher resolution and the possibility of electron energy-loss spectroscopy (EELS), etc. A representative example of
Low-voltage electron microscope
Low-voltage_electron_microscope
Emission of secondary X-rays from a material excited by high-energy X-rays
one or more electrons from the atom, and may occur if the atom is exposed to radiation with an energy greater than its ionization energy. X-rays and gamma
X-ray_fluorescence
Multireference coupled cluster Electron-molecule scattering theory and its applications to high resolution electron energy loss spectroscopy Ab initio calculations
Petr_Cársky
Electron microscopy technique
collection efficiency and allows the main beam to pass to an electron energy loss spectroscopy (EELS) detector, allowing both types of measurement to be
Annular_dark-field_imaging
Organised layer of amphiphilic molecules
Surface-enhanced Raman scattering (SERS), as well as High-resolution electron energy loss spectroscopy (HREELS). The structures of SAMs are commonly determined
Self-assembled_monolayer
Liquid-phase electron microscopy (LP EM) refers to a class of methods for imaging specimens in liquid with nanometer spatial resolution using electron microscopy
Liquid-Phase Electron Microscopy
Liquid-Phase_Electron_Microscopy
Low-energy ion scattering spectroscopy (LEIS), sometimes referred to simply as ion scattering spectroscopy (ISS), is a surface-sensitive analytical technique
Low-energy_ion_scattering
Analytical technique based on determining mass to charge ratio of ions
compatibility with other stages of spectroscopy, ease of use, etc. For example, electron ionization (EI) gives a high degree of fragmentation, yielding
Mass_spectrometry
reason for its high resolution in comparison to EELS. J. Szeftel, "Surface phonon dispersion, using electron energy loss spectroscopy," Surface Science
Surface_phonon
Advanced X-ray spectroscopy technique
resonant X-rays photon-in photon-out energy loss and momentum resolved spectroscopy, capable of measuring the energy and momentum transferred to specific
Resonant inelastic X-ray scattering
Resonant_inelastic_X-ray_scattering
The Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons (ER-C) is an institute located on the campus of Forschungszentrum Jülich belonging
Ernst_Ruska-Centre
Range 300-3000 GHz of the electromagnetic spectrum
inspection, relief measurement, and as a lower-energy alternative to X-rays for producing high resolution images of the interior of solid objects. Terahertz
Terahertz_radiation
Type of spectroanalytical procedure
Atomic absorption spectroscopy (AAS) is an elemental analysis method for determining the concentration of metals in a given sample. The principle of AAS
Atomic absorption spectroscopy
Atomic_absorption_spectroscopy
Specialized physical etching technique
Hofmann and M. Liu. (2003). "Advances in ion milling techniques for high resolution electron microscopy". Micron, 34(2), 117–123. Chang, D. H.; Jeong, S. H
Ion_milling_machine
American electron microscope manufacturer
be detected with high spatial resolution in an electron microscope by ultra-high energy resolution electron energy loss spectroscopy (EELS). In 2018,
Nion_(company)
English physicist
of electron energy loss spectroscopy (EELS) and scanning transmission electron microscopy (STEM) to provide an unprecedented high spatial resolution for
Richard_D._Leapman
methods have been developed to compute electron energy loss spectroscopy (EELS) and electron energy gain spectroscopy (EEGS) in TEM/STEM: Frequency-resolved
Multislice
Device
effects when using techniques such as high-resolution "lattice imaging" TEM or electron energy loss spectroscopy. This damaged layer can be minimized by
Focused_ion_beam
Analytical methodology in spectroscopy
into a charging lithium ion battery with X-ray Raman spectroscopy". Journal of Electron Spectroscopy and Related Phenomena. 200: 257–263. Bibcode:2015JESRP
Operando_spectroscopy
Change of a linear protein chain to a 3D structure
Kay LE (November 2016). "Probing the free energy landscapes of ALS disease mutants of SOD1 by NMR spectroscopy". Proceedings of the National Academy of
Protein_folding
Instrument used to physically scan the surface of a sample
electron field emission measurement, scanning electron microscopy (SEM), transmission electron microscopy (TEM), scanning tunnelling spectroscopy as
Probe_tip
Electromagnetic radiation with wavelengths from 1 m to 1 mm
installations. Microwave radiation is used in electron paramagnetic resonance (EPR or ESR) spectroscopy, typically in the X-band region (~9 GHz) in conjunction
Microwave
Nano-scale semiconductor particles
transition of an electron from the valence band to the conduction band. The excited electron can drop back into the valence band releasing its energy as light
Quantum_dot
Form of electromagnetic radiation
An X-ray is a form of high-energy electromagnetic radiation with a wavelength shorter than those of ultraviolet rays and longer than those of gamma rays
X-ray
Specialized technique associated with MRI
resonance spectroscopy (MRS) is a specialized technique associated with magnetic resonance imaging (MRI). Magnetic resonance spectroscopy (MRS), also
In vivo magnetic resonance spectroscopy
In_vivo_magnetic_resonance_spectroscopy
dealing with recoil spectroscopy involves electron back scattering process of matter such as thin films and solid materials. Energy loss of particles in target
Elastic_recoil_detection
Hexagonal lattice made of carbon atoms
produces a negative electron mass. The two versions behave alike and are indistinguishable via optical spectroscopy. An electron traveling from a positive-mass
Graphene
Smallest unit of a chemical element
such method is electron energy loss spectroscopy (EELS), which measures the energy loss of an electron beam within a transmission electron microscope when
Atom
British physicist
vibrational/phonon spectroscopy in the electron microscope, and can now reach 3 meV energy resolution at 20 kV. Used in tandem with the new Nion energy loss spectrometer
Ondrej_Krivanek
Subatomic particle
far deeper into matter because the deceleration of electrons and muons is primarily due to energy loss by the bremsstrahlung mechanism. For example, so-called
Muon
electron microprobe analyzers x-ray energy dispersive spectroscopy electron energy loss spectroscopy ....... There are no charges for usage of the forum
Microscopy_Society_of_America
Spectroscopic technique
based on resonance Raman spectroscopy, in which the frequency coincidence (or resonance) of the incident photon energy and electron transition greatly enhances
Surface-enhanced Raman spectroscopy
Surface-enhanced_Raman_spectroscopy
Physical-chemical process
G-quadruplex…) induces the ejection of electrons, leaving electron holes on the nucleic acid. The loss of an electron gives rise to a radical cation on the
DNA_photoionization
Study of physical and chemical phenomena that occur at the interface of two phases
photoemission spectroscopy (ARPES), X-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), low-energy electron diffraction (LEED), electron energy
Surface_science
Exotic particle made of an antiproton and positron
neutrons or protons, resulting in high-energy pions, that quickly decay into muons, neutrinos, positrons, and electrons. If antihydrogen atoms were suspended
Antihydrogen
Wave which propagates through a magnetic material
Germany proved that by using spin polarized electron energy loss spectroscopy (SPEELS), very high energy surface magnons can be excited. This technique
Spin_wave
Form of water
"'In-plant' NMR: Analysis of the Intact Plant Vesicularia dubyana by High Resolution NMR Spectroscopy". Molecules. 20 (3): 4359–4368. doi:10.3390/molecules20034359
Heavy_water
The energy resolution is on the order of 1 eV for photon energies on the order of 10 keV. Briefly put, the technique measures the density of electron holes
Electron_orbital_imaging
Spectroscopic technique
called the L-edge. Similar features can also be studied by Electron Energy Loss Spectroscopy. According to the selection rules, the transition is formally
Metal_L-edge
Viewing of objects which are too small to be seen with the naked eye
that are not within the resolution range of the normal eye). There are three well-known branches of microscopy: optical, electron, and scanning probe microscopy
Microscopy
was initially considered a promising hypothesis. However, electron energy loss spectroscopy measurements have bounded the density of oxygen vacancies
Lanthanum aluminate-strontium titanate interface
Lanthanum_aluminate-strontium_titanate_interface
Dichroism with circularly polarized light
crystallography and protein NMR spectroscopy, for example, which both give atomic resolution data. However, CD spectroscopy is a quick method that does not
Circular_dichroism
Medical imaging technique
imaging Cerebrospinal fluid flow MRI Electron paramagnetic resonance High-definition fiber tracking High-resolution computed tomography History of neuroimaging
Magnetic_resonance_imaging
Gaseous phase of water
the preparation of certain classes of biological specimens for scanning electron microscopy. Typically the specimens are prepared by cryofixation and freeze-fracture
Water_vapor
Phenomenon in solid-state physics of semiconductors
properties of the material. Energy distribution among electrons is described by the Fermi level and the temperature of the electrons. At absolute zero temperature
Carrier generation and recombination
Carrier_generation_and_recombination
Stellar core remnant
the presently known magnetic white dwarfs are identified by low-resolution spectroscopy, which is able to reveal the presence of a magnetic field of 1 megagauss
White_dwarf
small spots. Electron energy loss spectroscopy (EELS) in combination with transmission electron microscopy has modest spectral resolution and is rather
Scanning transmission X-ray microscopy
Scanning_transmission_X-ray_microscopy
Japanese space observatory (2023–Present)
The X-Ray Imaging and Spectroscopy Mission (XRISM, pronounced 'crism' or 'krizz-em', as if the X was a chi), is an X-ray space telescope. It is a mission
X-Ray Imaging and Spectroscopy Mission
X-Ray_Imaging_and_Spectroscopy_Mission
Outermost layer of the Sun's atmosphere
the extreme coronal temperatures. In 2012, high resolution (<0.2″) soft X-ray imaging with the High Resolution Coronal Imager aboard a sounding rocket revealed
Solar_corona
Electronic device
same or higher energy as the intersubband transition energy, an electron is excited. Once the electron is in an excited state, it can escape into the continuum
Quantum well infrared photodetector
Quantum_well_infrared_photodetector
Changes to stars over their lifespans
stellar core collapses, the pressure causes electrons and protons to fuse by electron capture. Without electrons, which keep nuclei apart, the neutrons collapse
Stellar_evolution
Type of mass spectrometry that uses an inductively coupled plasma to ionize the sample
microspectrophotometry and scanning electron microscopy-energy dispersive spectroscopy (SEM-EDS), and Raman spectroscopy. A growing trend in the world of
Inductively coupled plasma mass spectrometry
Inductively_coupled_plasma_mass_spectrometry
German physicist and researcher
[citation needed] In particular, Bangert pioneered the use of electron energy loss spectroscopy to better understand the electronic structure of wide-bandgap
Ursel_Bangert
Chemical reaction
"Avoiding H/D Scrambling with Minimal Ion Transmission Loss for HDX-MS/MS-ETD Analysis on a High-Resolution Q-TOF Mass Spectrometer" (PDF). Analytical Chemistry
Hydrogen–deuterium_exchange
Material which glows when excited by ionizing radiation
showers for high-energy γ-quanta and electrons. The range of Compton scattered photons for lower energy γ-rays is also decreased via high density materials
Scintillator
Intersection of nanotechnology and biology
electrical/electronic (e.g. electromechanical stimulation, capacitors, energy storage/batteries), optical (e.g. absorption, luminescence, photochemistry)
Nanobiotechnology
Extremely accurate clock in development
This was, however, too broad an energy range to apply high-resolution spectroscopy techniques; the transition energy had to be narrowed down first. Initial
Nuclear_clock
Coordination complexes of transition metals and metal ions with carbon monoxide ligands
H.; Kubiak, C. P. (2003). "Electron Transfer and Dynamic Infrared-Band Coalescence: It Looks like Dynamic NMR spectroscopy, but a Billion Times Faster"
Metal_carbonyl
Analytical technique to determine structure and composition of materials
atom, in which small negative electrons were spread through a diffuse positive region, backscattering of the high-energy positive alpha particles should
Rutherford backscattering spectrometry
Rutherford_backscattering_spectrometry
Device that creates charged atoms and molecules (ions)
denotes that to conserve energy and momentum a third body is required (the molecularity of the reaction is three). Electron capture can be used in conjunction
Ion_source
Gaseous ionization detector
kinetic energy because the number of ion pairs created by the incident ionizing charged particle is proportional to its energy. The energy resolution of a
Proportional_counter
Chemical element with atomic number 54 (Xe)
valence shell contains eight electrons. This produces a stable, minimum energy configuration in which the outer electrons are tightly bound. In a gas-filled
Xenon
conventional spectroscopy. While spectroscopy aims at characterizing processes through measurements with the highest possible energy resolution but without
Attosecond_chronoscopy
Response of spin to electromagnetic radiation
important features of coherent spectroscopy which have been used in fields other than magnetic resonance including laser spectroscopy and neutron scattering.
Spin_echo
Method of fabricating nanometer scale patterns using a special stamp
patterns. It is a simple nanolithography process with low cost, high throughput and high resolution. It creates patterns by mechanical deformation of imprint
Nanoimprint_lithography
Form of electromagnetic radiation
frequency range for the study of these energy states for molecules of the proper symmetry. Infrared spectroscopy examines absorption and transmission of
Infrared
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HIGH RESOLUTION-ELECTRON-ENERGY-LOSS-SPECTROSCOPY
HIGH RESOLUTION-ELECTRON-ENERGY-LOSS-SPECTROSCOPY
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HIGH RESOLUTION-ELECTRON-ENERGY-LOSS-SPECTROSCOPY
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HIGH RESOLUTION-ELECTRON-ENERGY-LOSS-SPECTROSCOPY
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