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Changes to light reflected from a magnetized surface
In physics the magneto-optic Kerr effect (MOKE) or the surface magneto-optic Kerr effect (SMOKE) is one of the magneto-optic effects. It describes the
Magneto-optic_Kerr_effect
Optical phenomenon
a magneto-optic material are known as the magneto-optic Kerr effect (not to be confused with the nonlinear Kerr effect). In general, magneto-optic effects
Magneto-optic_effect
Change in refractive index of a material in response to an applied electric field
The Kerr effect, also called the quadratic electro-optic (QEO) effect, is a change in the refractive index of a material in response to an applied electric
Kerr_effect
Computer drive that uses removable MO media
magnetic state of the surface, the reflected light varies due to the magneto-optic Kerr effect. During recording, laser power is increased to heat the material
Magneto-optical_drive
Physical magneto-optical phenomenon
The Faraday effect or Faraday rotation, sometimes referred to as the magneto-optic Faraday effect (MOFE), is a physical magneto-optical phenomenon. The
Faraday_effect
Region of a magnetic material in which the magnetization has uniform direction
range of 25-100 micrometers can be easily seen by Kerr microscopy, which uses the magneto-optic Kerr effect, which is the rotation of the polarization of
Magnetic_domain
Spectral line splitting in magnetic field
to Zeeman effect. Cotton–Mouton effect Faraday effect Lamb shift Magneto-optic Kerr effect Polarization spectroscopy Stark effect Voigt effect Zeeman energy
Zeeman_effect
effect (radio communication) (radio spectrum) Magali effect Magneto-optic effect (electric and magnetic fields in matter) (optical phenomena) Magneto-optic
List_of_effects
Scottish physicist (1824-1907)
AC Kerr effect. Kerr also demonstrated a similar phenomenon for magnetic fields, and it is now called the magneto-optic Kerr effect. The Kerr effect is
John_Kerr_(physicist)
Device that measures magnetism
to measure magnetization. One such technique, Kerr magnetometry makes use of the magneto-optic Kerr effect, or MOKE. In this technique, incident light is
Magnetometer
Birefringence in a liquid in the presence of a constant transverse magnetic field
but stronger effect than the Voigt effect (in which the medium is a gas). Its electric analog is the Kerr effect. It was discovered in 1905 by Aimé Cotton
Cotton–Mouton_effect
Magneto-optical storage medium, mainly for audio (1992–2013)
is accomplished with the laser alone: taking advantage of the magneto-optic Kerr effect, the player senses the polarization of the reflected light as
MiniDisc
Topics referred to by the same term
vehicle produced by the British Motor Corporation (BMC) Magneto-optic Kerr effect, MOKE, effect used for measuring magnetic properties List of storms named
Moke
Italian physicist (1871–1957)
discovered the magneto-optic Kerr effect in non-ferrous metals like silver, gold and aluminium. A thousand times more weak than the usual effect. English Wikisource
Quirino_Majorana
Wave which propagates through a magnetic material
Raman scattering and inelastic X-ray scattering), time-resolved magneto-optic Kerr effect (MOKE), inelastic electron scattering (spin-resolved electron
Spin_wave
Subfield of magnetism
standard in laboratory environments.[citation needed] Based on the magneto-optic Kerr effect, TR-MOKE is a pump-probe technique where a pulsed laser source
Magnonics
High-speed camera with an exposure time as brief as 10 nanoseconds
Shutter technique description at the Edgerton Digital Collections website MIT Museum Collections - Rapatronic camera with magneto-optic shutter, type CA-1
Rapatronic_camera
who discovered it in vapors. Unlike many other magneto-optical effects such as the Kerr or Faraday effect which are linearly proportional to the magnetization
Voigt_effect
Dutch physicist (1865–1943)
investigation of the Zeeman effect. For the remainder of his career he remained interested in research in magneto-optic effects. He also investigated
Pieter_Zeeman
Class of atomically thin materials
measured using Raman spectroscopy, Magneto-optic Kerr effect, Magnetic circular dichroism or Anomalous Hall effect techniques. The dimensionality of the
Magnetic_2D_materials
Madison Symmetric Torus Magnetized target fusion Magneto-optic Kerr effect Magneto-optical drive Magneto-optical trap Manipulation of atoms by optical field
List_of_laser_articles
Engineering of quantum spin systems to develop devices and materials
and physical or chemical processes via spin based phenomena: Magneto-optic Kerr effect (MOKE) Nuclear magnetic resonance (NMR) Neutron scattering Spin
Spin_engineering
Laser source with equal intervals of spectral lines
using an acousto-optic modulator is often used to control the offset frequency. The phase slip depends strongly on the Kerr effect, and by changing the
Frequency_comb
of such a reflection are known as the magneto-optic Kerr effect (not to be confused with the nonlinear Kerr effect). Two gyrotropic materials with reversed
Electromagnetic_metamaterial
Hexagonal lattice made of carbon atoms
nonlinear phase shift due to the optical nonlinear Kerr effect. Graphene demonstrates a large nonlinear Kerr coefficient of 10−7 cm2⋅W−1, nearly nine orders
Graphene
Cardiff University, UK research centre
materials can be analysed using the Magneto-Optic Kerr Effect Potter (MOKE) which utilises the transverse Kerr effect to measure magnetisation loops in
Wolfson_Centre_for_Magnetics
Magnetization transfer Magnetized target fusion Magneto-optic Kerr effect Magneto-optic effect Magneto-optical trap Magnetoception Magnetochemistry Magnetocrystalline
Index_of_physics_articles_(M)
Laser pulsing technique
modulator such as an acousto–optic device, a magneto-optic effect device or an electro-optic device – a Pockels cell or Kerr cell. The reduction of losses
Q-switching
History of physical crystallography to 1895
magnetische Circularpolarisation nach der electrischen Lichttheorie" [Kerr’s magneto-optical phenomenon and the magnetic circular polarization according
Physical crystallography before X-rays
Physical_crystallography_before_X-rays
Time reversal symmetry in physics
a local sense when the external field is held fixed, as when the magneto-optic effect is analyzed. This allows one to analyze the conditions under which
T-symmetry
Magnetic storage technology
focused laser spot rather than the magnetic field. In 1988, a 5.25-inch magneto-optic disk could hold 650 megabytes (MB) of data with a road map to several
Heat-assisted magnetic recording
Heat-assisted_magnetic_recording
some to the Marvel Comics character Magneto. In response to this, Bell said "We didn't consciously mimic [Magneto], but what they both have in common
List of Agents of S.H.I.E.L.D. characters
List_of_Agents_of_S.H.I.E.L.D._characters
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