One of the key challenges for future electronic memory and logic devices is finding viable ways of moving from today's two-dimensional structures, which hold data in an x-y mesh of cells, to three-dimensional structures in which data are stored in an x-y-z lattice of cells. This could allow a many-fold increase in performance. A suggested solution is the shift register--a digital building block that passes data from cell to cell along a chain. In conventional digital microelectronics, two-dimensional shift registers are routinely constructed from a number of connected transistors. However, for three-dimensional devices the added process complexity and space needed for such transistors would largely cancel out the benefits of moving into the third dimension. 'Physical' shift registers, in which an intrinsic physical phenomenon is used to move data near-atomic distances, without requiring conventional transistors, are therefore much preferred. Here we demonstrate a way of implementing a spintronic unidirectional vertical shift register between perpendicularly magnetized ferromagnets of subnanometre thickness, similar to the layers used in non-volatile magnetic random-access memory. By carefully controlling the thickness of each magnetic layer and the exchange coupling between the layers, we form a ratchet that allows information in the form of a sharp magnetic kink soliton to be unidirectionally pumped (or 'shifted') from one magnetic layer to another. This simple and efficient shift-register concept suggests a route to the creation of three-dimensional microchips for memory and logic applications.
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http://dx.doi.org/10.1038/nature11733 | DOI Listing |
Psychol Aging
January 2025
Department of Psychology, Trinity University.
Recently, a distinction has been drawn between conventional false memories, which misrepresent specific facts, and deep distortions, which misrepresent relations that connect facts. We report the first study of adult developmental trends in deep distortions, using a paradigm in which people make conjoint recognition judgments about incompatible facts (e.g.
View Article and Find Full Text PDFMemorializes Larry L. Jacoby (1944-2024), a pioneering cognitive psychologist, who passed away in Pittsburgh, Pennsylvania, on March 15, 2024. Jacoby earned his undergraduate degree at Washburn University, where he took pride in being a football lineman and met his lifelong partner, Carole.
View Article and Find Full Text PDFAppl Neuropsychol Adult
January 2025
Clinical Center of Excellence for Body, Mind, and Health, GGz Breburg, Tilburg, The Netherlands.
This study addresses the relationship between performance validity and treatment outcome in a sample of patients with somatic symptom and related disorders (SSRD). A retrospective analysis was performed in a sample of 337 patients with SSRD who received treatment. Interaction effects were determined between performance validity test (PVT) performance and raw change scores, reliable change index and clinical change of depression, anxiety and physical symptoms.
View Article and Find Full Text PDFJ Fluoresc
January 2025
College of Chemistry and Chemical Engineering, Donghua University, Shanghai, 201620, China.
Construction of single probes for simultaneous detection of common trivalent metal ions has attracted much attention due to higher efficiency in analysis and cost. A naphthalimide-based fluorescent probe K1 was synthesized for selective detection of Al, Cr and Fe ions. Fluorescence emission intensity at 534 nm of probe K1 in DMSO/HO (9:1, v/v) was significantly enhanced upon addition of Al, Cr and Fe ions while addition of other metal ions (Li, Na, K, Ag, Cu, Fe, Zn, Co, Ni, Mn, Sr, Hg, Ca, Mg, Ce, Bi and Au) did not bring about substantial change in fluorescence emission.
View Article and Find Full Text PDFSci Adv
January 2025
State Key Laboratory of Advanced Welding and Joining of Materials and Structures, School of Materials Science and Engineering, Harbin Institute of Technology, Shenzhen 518055, China.
Perovskite oxides have a wide variety of physical properties that make them promising candidates for versatile technological applications including nonvolatile memory and logic devices. Chemical tuning of those properties has been achieved, to the greatest extent, by cation-site substitution, while anion substitution is much less explored due to the difficulty in synthesizing high-quality, mixed-anion compounds. Here, nitrogen-incorporated BaTiO thin films have been synthesized by reactive pulsed-laser deposition in a nitrogen growth atmosphere.
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