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505por Jacak, Janusz Edward“…Recent experimental progress in Hall measurements in bilayer graphene in the so-called open-face configuration of boron nitride encapsulated samples, together with the earlier technique of suspended samples, allows for precise observation of the fractional quantum Hall effect (FQHE) in all 4 subbands of the Lowest Landau level (with n = 0 and n = 1) and in the next LL subbands (with n = 2) in the bilayer system. …”
Publicado 2017
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507por Taskin, A. A., Legg, Henry F., Yang, Fan, Sasaki, Satoshi, Kanai, Yasushi, Matsumoto, Kazuhiko, Rosch, Achim, Ando, Yoichi“…Here we report our discovery of a novel planar Hall effect (PHE) from the TI surface, which results from a hitherto-unknown resistivity anisotropy induced by an in-plane magnetic field. …”
Publicado 2017
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508“…We propose a new theory of the topological Hall effect (THE) in systems with non-collinear magnetization textures such as magnetic skyrmions. …”
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509“…Here, we demonstrate for the first time that a single achiral nanoaperture can be utilized as a meta-macromolecule to achieve giant angular spin Hall effect of light. By controlling the spin-related momenta, we show that these nanoapertures can enable full control of the phase gradient at a deep-subwavelength level, thus forming unique building blocks for optical metasurfaces. …”
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510por Kolesnikov, Alexander G., Stebliy, Maksim E., Samardak, Alexander S., Ognev, Alexey V.“…The lateral motion of a magnetic skyrmion, arising because of the skyrmion Hall effect, imposes a number of restrictions on the use of this spin state in the racetrack memory. …”
Publicado 2018
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511“…We show that [Formula: see text] is phylogenetically flexible if and only if it satisfies a Hall-type inequality condition of being ‘slim’. Using submodularity arguments, we show that there is a polynomial-time algorithm for determining whether or not [Formula: see text] is slim. …”
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512por Panna, Alireza R., Hu, I-Fan, Kruskopf, Mattias, Patel, Dinesh K., Jarrett, Dean G., Liu, Chieh-I, Payagala, Shamith U., Saha, Dipanjan, Rigosi, Albert F., Newell, David B., Liang, Chi-Te, Elmquist, Randolph E.“…As first recognized in 2010, epitaxial graphene on SiC(0001) provides a platform for quantized Hall resistance (QHR) metrology unmatched by other two-dimensional structures and materials. …”
Publicado 2021
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513“…In this study, we propose an omnidirectional sensitive pressure sensor using a cone-shaped magnet slider and Hall sensor embedded in a flexible elastomer, which guarantees taking pressure measurements from any side of the fingertip. …”
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514“…In addition, a controlled device with an added metal bar placed in the middle of the Hall bar configuration was introduced. Despite the fact that the equipotential lines in the controlled device were broken by the additional metal bar, only the R(xx) was affected by nonzero resistance, whereas the Hall resistance (R(xy)) revealed the well-quantized plateaus in the QH state. …”
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515“…We have derived wave functions and energy spectrum of direct in a monolayer and indirect pseudomagnetoexcitons in a double layer of gapped graphene. The quantum Hall effect for direct and indirect excitons was predicted in the monolayers and double layers of gapped graphene under strain-induced gauge pseudomagnetic field, correspondingly.…”
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517“…As the strength of the attractive interaction is increased, the system first makes a transition from a quantum Hall phase to a skyrmion lattice phase that is fully gapped in the bulk but has topological chiral edge current, characterizing a topologically nontrivial state. …”
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519por Popert, Alexander, Shimazaki, Yuya, Kroner, Martin, Watanabe, Kenji, Taniguchi, Takashi, Imamoğlu, Ataç, Smoleński, Tomasz“…[Image: see text] Graphene and its heterostructures provide a unique and versatile playground for explorations of strongly correlated electronic phases, ranging from unconventional fractional quantum Hall (FQH) states in a monolayer system to a plethora of superconducting and insulating states in twisted bilayers. …”
Publicado 2022
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