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Analytical technique used in materials science
Field-emission microscopy (FEM) is an analytical technique that is used in materials science to study the surfaces of needle apexes. The FEM was invented
Field-emission_microscopy
Type of microscope invented by Erwin Wilhelm Müller
effects) and by the presence of large electric field. Atom probe Electron microscope Field emission microscopy List of surface analysis methods Müller, Erwin
Field_ion_microscope
Technique in fluorescence microscopy
Stimulated emission depletion (STED) microscopy is one of the techniques that make up super-resolution microscopy. It creates super-resolution images by
STED_microscopy
Emission of electrons induced by an electrostatic field
Field electron emission, also known as field-induced electron emission, field emission (FE) and electron field emission, is the emission of electrons from
Field_electron_emission
Type of microscope with electrons as a source of illumination
Chicago introduced the scanning transmission electron microscope using a field emission source, enabling scanning microscopes at high resolution. By the early
Electron_microscope
cross-correlation spectroscopy FEM – Field emission microscopy FIB – Focused ion beam microscopy FIM-AP – Field ion microscopy–atom probe Flow birefringence
List of materials analysis methods
List_of_materials_analysis_methods
Type of electron gun
A field emission gun (FEG) is a type of electron gun in which a sharply pointed Müller-type[clarification needed] emitter is held at several kilovolts
Field_emission_gun
Topics referred to by the same term
Handling Federation Zimbabwe Airlink (ICAO code), a defunct airline Field emission microscopy, an analytical technique to investigate molecular surface structures
FEM
Imaging and diffraction using electrons that pass through samples
high-resolution transmission electron microscopy (HRTEM), also known as phase contrast. When using a field emission source and a specimen of uniform thickness
Transmission electron microscopy
Transmission_electron_microscopy
Optical microscope that uses fluorescence and phosphorescence
resolution. As well in the 1990s another super resolution microscopy method based on wide field microscopy has been developed. Substantially improved size resolution
Fluorescence_microscope
Series of techniques in optical microscopy
near-field (photon-tunneling microscopy as well as those that use the Pendry Superlens and near field scanning optical microscopy) or on the far-field. Among
Super-resolution_microscopy
Type of electron microscopy
electron microscopy (PEEM, also called photoelectron microscopy, PEM) is a type of electron microscopy that utilizes local variations in electron emission to
Photoemission electron microscopy
Photoemission_electron_microscopy
Optical imaging technique
a time. Thus, confocal laser scanning microscopy (CLSM) achieves a controlled and highly limited depth of field. The principle of confocal imaging was
Confocal_microscopy
Scanning microscopy using thin samples and transmitted electrons
atoms using an annular dark field detector. Crewe and coworkers at the University of Chicago developed the cold field emission electron source and built
Scanning transmission electron microscopy
Scanning_transmission_electron_microscopy
Low-energy electron microscopy, or LEEM, is an analytical surface science technique used to image atomically clean surfaces, atom-surface interactions
Low-energy electron microscopy
Low-energy_electron_microscopy
Stimulated emission depletion microscope (STED) Multifocal plane microscopy (MUM) J. Bewersdorf; A. Egner; S.W. Hell (2004). "4Pi-Confocal Microscopy is Coming
4Pi_microscope
(usually, MD) with the continuum (macro) scale methods (usually, field emission microscopy) within a single mathematical model. Development of these complex
Nanomechanics
Branch of microscopy
ballistic electron emission microscopy ECSTM electrochemical scanning tunneling microscope SHPM, scanning Hall probe microscopy SPSM spin polarized scanning
Scanning_probe_microscopy
German-American physicist (born 1928)
Spin-Polarized Low Energy Electron Microscopy (SPLEEM) and Spectroscopic Photo Emission and Low Energy Electron Microscopy (SPELEEM). He is currently Distinguished
Ernst_G._Bauer
Type of electron microscope
history of scanning electron microscopy has been presented by McMullan. Although Max Knoll produced a photo with a 50 mm object-field-width showing channeling
Scanning_electron_microscope
Heide; Pawley, James, eds. (2007). Biological low voltage field emission scanning electron microscopy. New York: Springer. ISBN 9780387729725. v t e
Scanning electron cryomicroscopy
Scanning_electron_cryomicroscopy
Release of a photon triggered by another
energy state regardless of the external electromagnetic field. The phenomenon of stimulated emission was predicted by Albert Einstein in 1916, introducing
Stimulated_emission
Artificial vacuum with very low pressure
Angle resolved photoemission spectroscopy (ARPES) Field emission microscopy and Field ion microscopy Atom Probe Tomography (APT) UHV is necessary for these
Ultra-high_vacuum
Viewing of objects which are too small to be seen with the naked eye
Microscopy is the technical field of using microscopes to view subjects too small to be seen with the naked eye (objects that are not within the resolution
Microscopy
Electron microscope technique
Photon-Induced Near-field Electron Microscopy (PINEM) is a variant of the Ultrafast Transmission Electron Microscopy technique and is based on the inelastic
Photon-Induced Near-field Electron Microscopy
Photon-Induced_Near-field_Electron_Microscopy
Non-linear optical imaging modality
requiring longer pulse durations than TPA. Pump–probe microscopy can also measure stimulated emission. In this case, the pump beam drives the electron to
Pump–probe_microscopy
Fluorescence imaging technique
thickness. Unlike traditional fluorescence microscopy, where the excitation wavelength is shorter than the emission wavelength, two-photon excitation requires
Two-photon excitation microscopy
Two-photon_excitation_microscopy
Microscope that uses visible light
Examples include Vertico SMI, near field scanning optical microscopy which uses evanescent waves, and stimulated emission depletion. In 2005, a microscope
Optical_microscope
Field ion microscope coupled with a mass spectrometer
make definitive identification impossible. Field ion microscopy is a modification of field emission microscopy where a stream of tunneling electrons is
Atom_probe
Microscopy technique
Near-field scanning optical microscopy (NSOM) or scanning near-field optical microscopy (SNOM) is a microscopy technique for nanostructure investigation
Near-field scanning optical microscope
Near-field_scanning_optical_microscope
Non-destructive elemental analysis technique
Particle-induced X-ray emission or proton-induced X-ray emission (PIXE) is a technique used for determining the elemental composition of a material or
Particle-induced X-ray emission
Particle-induced_X-ray_emission
components on wafers. Emission Microscopy Offers advantages for semiconductor wafer emission microscopy which detects faint emissions of light (Photons)
Solid_immersion_lens
Neutron diffraction Optical microscopy Optical emission spectroscopy Optical rotation (OR) Particle induced X-ray emission spectroscopy (PIXE) Pyrolysis
List of chemical analysis methods
List_of_chemical_analysis_methods
Imaging by sections or sectioning using a penetrative wave
emission of electromagnetic radiation (Jackson, 1975). Linear particle acceleration is one possibility, but apart from the very high electric fields one
Tomography
Fluorescence microscopy imaging method
Photo-activated localization microscopy (PALM or FPALM) and stochastic optical reconstruction microscopy (STORM) are widefield (as opposed to point scanning
Photoactivated localization microscopy
Photoactivated_localization_microscopy
different areas of science. Scherzer's theorem is a theorem in the field of electron microscopy. It states that there is a limit of resolution for electronic
Aberration-corrected transmission electron microscopy
Aberration-corrected_transmission_electron_microscopy
Method of microscopy
microscopy, fluorescent markers are used. In one condition, the marker can freely be excited from ground state and returns spontaneously via emission
GSD_microscopy
Fluorescence microscopy technique
Also a combination of stimulated emission depletion microscopy (STED) and selective plane illumination microscopy has been published, that leads to a
Light sheet fluorescence microscopy
Light_sheet_fluorescence_microscopy
Quantum microscopy allows microscopic properties of matter and quantum particles to be measured and imaged. Various types of microscopy use quantum principles
Quantum_microscopy
American physicist (1927–2009)
has produced over 5300 cold field emission scanning electron microscopes and over 4000 (Schottky) thermal field emission scanning electron microscopes
Albert_Crewe
Electron microscopy technique
Weak beam dark field (WBDF) microscopy is a type of transmission electron microscopy (TEM) dark field imaging technique that allows for the visualization
Weak-beam dark-field microscopy
Weak-beam_dark-field_microscopy
Romanian-German physicist (born 1962)
invention and subsequent development of Stimulated Emission Depletion microscopy and related microscopy methods, he was able to show that one can substantially
Stefan_Hell
Chinese chemist
spectroscopy, Annular dark-field imaging, X-ray crystallography, Field-emission microscopy, High-resolution transmission electron microscopy and Fourier-transform
Xie_Yi
Spectroscopy used in chemistry and physics
a result, CARS is orders of magnitude stronger than spontaneous Raman emission. CARS is a third-order nonlinear optical process involving three laser
Coherent anti-Stokes Raman spectroscopy
Coherent_anti-Stokes_Raman_spectroscopy
Electrode in the electron gun assembly of some thermionic devices
pointed) tip. This bias voltage creates a repulsive electrostatic field that suppresses emission of electrons from most areas of the cathode. The emitter tip
Wehnelt_cylinder
Device that emits light via optical amplification
stimulated emission of electromagnetic radiation. The word laser originated as an acronym for light amplification by stimulated emission of radiation
Laser
irregularities Field electron emission Field emission microscopy Field emission probes Field equation Field of Streams Field rate Field strength Fierz identity
Index_of_physics_articles_(F)
Type of microscopic technique used for imaging surfaces by tunneling of photons
photoluminescence, absorption, and Raman spectroscopy. Conventional optical microscopy utilizing far-field illumination achieves resolution that is restricted by the Abbe
Photon_scanning_microscopy
Specialized physical etching technique
thinning specimens until electron transparency in transmission electron microscopy (TEM). The accurate and damage-free surface ion milling provides makes
Ion_milling_machine
Agents that emit light after excitation by light
nanometers Em (nm): Emission wavelength in nanometers MW: Molecular weight QY: Quantum yield Fluorophores have particular importance in the field of biochemistry
Fluorophore
Procedure for detection and localization of an antigen
Immunolabeling for Scanning Electron Microscopy (SEM) and Field Emission SEM". Introduction to Electron Microscopy for Biologists. Methods in Cell Biology
Immunolabeling
Particle accelerator in Catalonia, Spain
infrared (FTIR) spectroscopy and microscopy. FTIR is a way to identify the infrared spectrum of absorption or emission of a material and thus its chemical
ALBA_(synchrotron)
Light field microscopy (LFM) is a scanning-free 3-dimensional (3D) microscopic imaging method based on the theory of light field. This technique allows
Light_field_microscopy
Structured carbon fibers
a form of field emission. Composite materials Scanning probe microscopy tips Scanning probe microscopy (SPM) is a branch of microscopy that forms images
Carbon_nanofiber
Physical model of propagating energy
emissions are known in spectral bands other than visible light. Delayed emission is called phosphorescence. Quantum mechanics also governs emission,
Electromagnetic_radiation
Scientific instrument for observing small objects
around two to four times and techniques like stimulated emission depletion (STED) microscopy are approaching the resolution of electron microscopes. This
Microscope
Species of plant
Pressure Field Emission Scanning Electron Microscopy for Trichome Profiling of Plectranthus tomentosa by Secondary Electron Imaging". Applied Microscopy. 43:
Plectranthus_hadiensis
Microscope observing a thin depth of a cell
was an optical technique that illuminates the entire sample. Confocal microscopy was then introduced in 1960 which decreased the background and exposure
Total internal reflection fluorescence microscope
Total_internal_reflection_fluorescence_microscope
Microscope imaging technique
Second-harmonic imaging microscopy (SHIM) is based on a nonlinear optical effect known as second-harmonic generation (SHG). SHIM has been established as
Second-harmonic imaging microscopy
Second-harmonic_imaging_microscopy
Czech scientific-instrument manufacturer
model used a field-emission electron gun, while the Lyra, introduced in 2007, combined a focused ion beam with scanning electron microscopy. During the
Tescan
Imaging Instrument
Topografiner of R. Young, J. Ward, and F. Scire from the NIST, relied on field emission. However, Young is credited by the Nobel Committee as the person who
Scanning_tunneling_microscope
Photon emission under the impact of an electron beam
electrons impacting on a luminescent material such as a phosphor, cause the emission of photons which may have wavelengths in the visible spectrum. A familiar
Cathodoluminescence
Optical system with resolution performance at the instrument's theoretical limit
fluorescence microscopy the excitation and emission are typically on different wavelengths. In total internal reflection fluorescence microscopy a thin portion
Diffraction-limited_system
images, usually two channels in a multidimensional microscopy image recorded at different emission wavelengths. A popular approach was introduced by Sylvain
Colocalization
denotes a group of optical fluorescence microscopy techniques with very high resolution. Using standard far field visible light optics a resolution far
RESOLFT
Imaging molecules within living patients
fluorescence microscope (TIRF)-microscopy, stimulated emission depletion (STED)-nanoscopy, and atomic force microscopy (AFM) as here images of molecules are the readout
Molecular_imaging
Emission of light by a substance that has absorbed light
Fluorescence is one of two kinds of photoluminescence, the emission of light by a substance that has absorbed light or other electromagnetic radiation
Fluorescence
Point defect in diamonds
centres as a nanoscopic light source for scanning near-field optical microscopy". Journal of Microscopy. 202 (1): 2–6. doi:10.1046/j.1365-2818.2001.00829.x
Nitrogen-vacancy_center
Genus of protists
Through metatranscriptomics using RNA-seq technology combined with field-emission microscopy the virulence factors of a recently described genus of Neobodonida
Neobodo
Series of structures found in protists
plasma membrane extraction, high-voltage electron microscopy, field emission scanning electron microscopy, the cell-sandwich technique, freeze-etching, and
Mastigont_system
three photon microscopy with the emission wavelength slightly longer than one-third of the excitation wavelength. Three photon microscopy has deeper tissue
Three-photon_microscopy
Method of measuring the microscopic topography of a material
In microscopy, conductive atomic force microscopy (C-AFM) or current sensing atomic force microscopy (CS-AFM) is a mode in atomic force microscopy (AFM)
Conductive atomic force microscopy
Conductive_atomic_force_microscopy
Instrument used to physically scan the surface of a sample
techniques. For example, electron field emission measurement, scanning electron microscopy (SEM), transmission electron microscopy (TEM), scanning tunnelling
Probe_tip
Japanese materials scientist
spintronic materials. He has applied atom probe tomography and electron microscopy to study relationships between microstructure and properties in metallic
Kazuhiro_Hono
Higher educational institute in Odisha, India
microscopy (HR-TEM), field-emission scanning electron microscopy (FESEM), atomic force microscopy (AFM), live-cell confocal microscopy, and a preclinical 3T
Indian Institute of Science Education and Research, Berhampur
Indian_Institute_of_Science_Education_and_Research,_Berhampur
pioneered the technique of ballistic electron emission microscopy. At Cambridge he has transformed the field of organic semiconductor transistors from curiosity
Henning_Sirringhaus
Photochemical energy transfer mechanism
bright cyan-excitable orange fluorescent protein facilitates dual-emission microscopy and enhances bioluminescence imaging in vivo". Nature Biotechnology
Förster resonance energy transfer
Förster_resonance_energy_transfer
(spatially modulated illumination) and SPDM (spectral precision distance microscopy). The effective optical resolution of this optical nanoscope has reached
Vertico spatially modulated illumination
Vertico_spatially_modulated_illumination
German American physicist and inventor
physicist who invented the Field Emission Electron Microscope (FEEM), the Field Ion Microscope (FIM), and the Atom-Probe Field Ion Microscope. He and his
Erwin_Wilhelm_Müller
American microscope technology company
as a supplier of electron and ion beam sources for field emission research and electron microscopy. The name was shortened to FEI Company in 1973. In
FEI_Company
Spectroscopic technique
Energy-dispersive X-ray spectroscopy, (EDX or EDXRF) PEEM, Photoelectron emission microscopy Mogk, David (13 August 2021). "X-Ray Photoelectron Spectroscopy (XPS;
X-ray photoelectron spectroscopy
X-ray_photoelectron_spectroscopy
Type of electromagnetic spectroscopy
AI-optimized TRFPs feature extended lifetimes and brighter emissions, advancing super-resolution microscopy. TRFPs are used in model organisms such as e.g., Drosophila
Fluorescence_spectroscopy
Study of analytes using scientific instruments
science. Microscopy can be categorized into three different fields: optical microscopy, electron microscopy, and scanning probe microscopy. Recently
Instrumental_chemistry
Chemical compound
compound which is used as a fluorescent dye when applied to fluorescence microscopy. It is used to investigate membrane qualities of the phospholipid bilayers
Laurdan
Type of energy
electron emission from the sample induced by photon absorption (photoemission), by high temperature (thermionic emission), due to an electric field (field electron
Work_function
Spectroscopy based on time- or space-domain data
of Fourier-transform spectroscopy principles in scanning near-field optical microscopy techniques. Particularly in nano-FTIR, where the scattering from
Fourier-transform spectroscopy
Fourier-transform_spectroscopy
Electron scattering technique for structural analyses
Möllenstedt. The development of the Field Emission Gun (FEG) in the 1970s, the Scanning Transmission Electron Microscopy (STEM), energy filtering devices
Convergent beam electron diffraction
Convergent_beam_electron_diffraction
Simultaneous measurement of spectra and pictures
FLIM | Fluorescence Lifetime Imaging Microscopy: Fluorescence, fluorophore chemical imaging, confocal emission microspectroscopy, FRET, cross-correlation
Chemical_imaging
Form of spectroscopy employed in physics, chemistry, biology, and other fields
microscopy methods as it circumvents the need for long and time-consuming frequency scanning. Nonlinear optics Coherent Raman scattering microscopy Prince
Stimulated_Raman_spectroscopy
Computer Output to Laser Disc Confocal laser scanning microscopy Confocal microscopy Containment field Continuous scan laser Doppler vibrometry Continuous
List_of_laser_articles
Device
approaches in Volumetric Electron Microscopy. History of FIB technology 1975: The first FIB systems based on field emission technology were developed by Levi-Setti
Focused_ion_beam
Type of defect in crystalline materials
faults can be visualized using electron microscopy. One commonly used technique is transmission electron microscopy (TEM). The other is electron channeling
Stacking_fault
Scanning electron microscopy technique
electron backscattered diffraction in a cold field emission gun SEM". Ultramicroscopy. Frontiers in Electron Microscopy in Materials Science. 67 (1): 59–68. doi:10
Electron backscatter diffraction
Electron_backscatter_diffraction
Medical diagnostic method
microscopy, the laser in CLE filtered by the pinhole excites the fluorescent dye through a beam splitter and objective lens. The fluorescent emission
Confocal_endoscopy
German-born American biophysicist and Nobel laureate (born 1940)
laureate. He is regarded as the founder of single-particle cryo-electron microscopy (cryo-EM), for which he shared the Nobel Prize in Chemistry in 2017 with
Joachim_Frank
Type of transmissive optical device
been achieved by several "super-resolution" far-field microscopy techniques, including stimulated emission depletion (STED) and its related RESOLFT (reversible
Superlens
Concept in physics
{I_{z}-I_{y}}{I_{x}+I_{y}+I_{z}}}} When the excitation is polarized along the z-axis, emission from the fluorophore is symmetric around the z-axis(Figure). Hence statistically
Fluorescence_anisotropy
Using helium atoms to image solid surfaces
The scanning helium microscope (SHeM) is a form of microscopy that uses low-energy (5–100 meV) neutral helium atoms to image the surface of a sample without
Scanning_helium_microscopy
X-ray microscopy lies between that of the optical microscope and the electron microscope. It has an advantage over conventional electron microscopy in that
Soft_X-ray_microscopy
Difference between absorption and emission peak maxima
wavenumber or frequency) of the spectral band maxima of the absorption and emission spectra (fluorescence and Raman being two examples) of the same electronic
Stokes_shift
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FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
Girl/Female
Hindu, Indian, Malayalam, Marathi
Permission
Boy/Male
Hindu
Enter, Admission
Boy/Male
English
In the field.
Biblical
mission; sending
Girl/Female
Tamil
Hay field
Boy/Male
English
Gathering field; meeting field.
Boy/Male
Australian, British, English
A Field
Surname or Lastname
English
English : variant of Field.
Girl/Female
Indian
Hay field
Surname or Lastname
English
English : topographic name from Middle English feldes, plural or possessive of feld ‘open country’. This name is also found as a translation of equivalent names in other languages, in particular French Deschamps, Duchamp.
Girl/Female
Arabic, Islamic, Muslim, Pakistani, Urdu
Permission
Boy/Male
Anglo, British, English
Field with Ferns; Fern Field
Boy/Male
Tamil
Siddharatha | ஸீதà¯à®¤à®¾à®°à®¤à®¾
For righteous task, Mission, Purpose
Siddharatha | ஸீதà¯à®¤à®¾à®°à®¤à®¾
Surname or Lastname
English
English : topographic name for someone who lived on land which had been cleared of forest, but not brought into cultivation, from Old English feld ‘pasture’, ‘open country’, as opposed on the one hand to æcer ‘cultivated soil’, ‘enclosed land’ (see Acker) and on the other to weald ‘wooded land’, ‘forest’ (see Wald).Possibly also Scottish or Irish : reduced form of McField (see McPhail).Jewish (American) : Americanized and shortened form of any of the many Jewish surnames containing Feld.
Boy/Male
Tamil
Enter, Admission
Boy/Male
Hindu
For righteous task, Mission, Purpose
Boy/Male
Anglo, British, English
Field with Ferns; Fern Field
Boy/Male
African, American, Anglo, Australian, British, Christian, English, Jamaican
Battlefield; Spear Field; Triangular Field
Girl/Female
Arabic, Muslim
Remission of Sins; Forgiveness
Boy/Male
Gujarati, Hindu, Indian, Jain, Kannada, Telugu
Target; Mission; Aim
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
FIELD EMISSION-MICROSCOPY
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