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characterization of domain wallndash based traps for magnetic

Characterization of domain wall–based traps for magnetic

We characterize the magnetic behavior of an array of magnetic bead traps based on domain walls (DWs) formed in zig-zag permalloy wires patterned on a Si substrate. Using magnetic force and magneto-optical Kerr effect microscopy, we study the nucleation and annihilation of DWs for two different wire widths. Through scanning electron microscopy with polarization analysis, we analyze in detail

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Characterization of domain wall-based traps for magnetic

01-04-2012· We characterize the magnetic behavior of an array of magnetic bead traps based on domain walls (DWs) formed in zig-zag permalloy wires patterned on a Si substrate. Using magnetic force and magneto-optical Kerr effect microscopy, we study the nucleation and annihilation of DWs for two different wire widths. Through scanning electron microscopy with polarization analysis, we

More

Characterization of domain wall-based traps for magnetic

We characterize the magnetic behavior of an array of magnetic bead traps based on domain walls (DWs) formed in zig-zag permalloy wires patterned on a Si substrate. Using magnetic force and magneto-optical Kerr effect microscopy, we study the nucleation and

More

Characterization of domain wall–based traps for magnetic

Request PDF Characterization of domain wall–based traps for magnetic beads We characterize the magnetic behavior of an array of magnetic bead traps based on domain walls (DWs) formed in zig

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Magnetic bead detection using domain wall-based nanosensor

Characterization of domain wall–based traps for magnetic beads separation J. Appl. Phys. 111, 07B336 (2012); 10.1063/1.3689009 Tunable magnetic flux sensor using a

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Characterization of magnetic domain walls using electron

Characterization of magnetic domain walls using electron magnetic chiral dichroism. Ren Chao Che, 1 Chong Yun Liang, 1 Xiang He, 2 Hai Hua Liu, 2 and Xiao Feng Duan 2 Based on the EMCD data, nanosized regions on the domain wall could be easily assigned to a cross Bloch line, a circular Bloch line or a Neel line. Experimental details.

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Systematic method for electrical characterization of

01-02-2017· The time-domain characterization of the electrical noise requires large time windows due to the extensive quantity of events needed to obtain meaningful statistics .In addition, due to the dependence of the capture time (τ c: average time at the high current level) and emission time (τ e: average time at the low current level) of a trap with the carrier concentration of the channel,random

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Sebastian Hankemeier's research works University of

Sebastian Hankemeier's 3 research works with 3 citations and 85 reads, including: Characterization of domain wall–based traps for magnetic beads

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Domain wall pinning and potential landscapes created by

Micromagnetic analysis of switching and domain structure in amorphous metallic nanowires Appl. Phys. Lett. 100, 122404 (2012) Microstructure dependence of Barkhausen voltage pulse width in steel J. Appl. Phys. 111, 063903 (2012) Characterization of domain wall–based traps for magnetic beads separation J. Appl. Phys. 111, 07B336 (2012)

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Geometrically designed domain wall trap in tri-segmented

“Domain wall traps” have been engineered and well-exploited in nanostrips by creating a geometrical trapping site, e.g. a single notch along a stripe, compared to diameter-modulated (DM

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nanomag®-D ? Magnetic particles, nanoparticle

Magnetic dextran nanoparticles (nanomag ®-D) are available with particle diameters of 130 nm, 250 nm and 500 nm ; can be separated with a permanent magnet, are prepared via the core-shell method with a core of magnetite and a dextran shell, consist of 75-80%

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Characterization (materials science) Wikipedia

Characterization, when used in materials science, refers to the broad and general process by which a material's structure and properties are probed and measured.It is a fundamental process in the field of materials science, without which no scientific understanding of engineering materials could

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Environmental magnetic characterization of the

01-07-2020· Based on magnetic proxies, the sediment provenances in both the Alaknanda and Ramganga River can be characterized as, (i) regions of felsic rock weathering where magnetism is controlled by low content of ferrimagnetic minerals (low χ lf and SIRM), (ii) Lesser Himalayan terrain with basaltic intrusion results in high concentration of magnetic minerals (high χ lf and SIRM), (iii)

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Multidiagnostics investigation of the role of the magnetic

The impact of the magnetic field profile on the operations of plasma-based Electron Cyclotron Resonance Ion Sources (ECRIS) has been debated and investigated for a long time, and a summary is given by the collection of the so-called "magnetic scaling laws", i.e., some rules-of-thumb providing the optimal configuration of the axial and radial confining magnetic fields.

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Fourier-transform ion cyclotron resonance Wikipedia

Fourier-transform ion cyclotron resonance mass spectrometry is a type of mass analyzer (or mass spectrometer) for determining the mass-to-charge ratio (m/z) of ions based on the cyclotron frequency of the ions in a fixed magnetic field. The ions are trapped in a Penning trap (a magnetic field with electric trapping plates), where they are excited (at their resonant cyclotron frequencies) to a

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Characterization of Therapeutic Antibodies and Related

Characterization of Drug-Product-Related Impurities and Variants of a Therapeutic Monoclonal Antibody by Higher Energy C-Trap Dissociation Mass Spectrometry. Analytical Chemistry 2015,87 (2),914-921.

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