Results 191 to 200 of about 11,582,841 (294)
Bias polarity dependent low-frequency noise in ultra-thin AlOx-based magnetic tunnel junctions. [PDF]
Chen CY +6 more
europepmc +1 more source
A soft, dual‐channel hydrogel patch enables simultaneous detection of wound temperature and strain by integrating ion‐diffusion‐mediated thermoelectric and resistive sensing. The conformal design maintains stable performance during motion, capturing subtle inflammatory and mechanical changes for continuous wound monitoring.
Yu Fang +7 more
wiley +1 more source
Low-frequency noise analysis on asymmetric damage and self-recovery behaviors of ZnSnO thin-film transistors under hot carrier stress. [PDF]
Shin W, Lee JY, Kim J, Lee SY, Lee ST.
europepmc +1 more source
Infrasound and Low Frequency Noise. Low Frequency Noise of Dam and Weir.
openaire +1 more source
In situ Auger Electron Spectroscopy resolves oxidation states with high fidelity during the pulsed laser deposition of multivalent perovskite manganate and vanadate heterostructures. The chemical‐state signature is carried by the valence‐electron population of the transition‐metal cation, read out through the relative intensities of Auger fine ...
Harish Kumarasubramanian +1 more
wiley +1 more source
Subjective Complaints and Coping Strategies of Individuals with Reported Low-Frequency Noise Perceptions. [PDF]
Erdelyi KH +4 more
europepmc +1 more source
Ferroelectric tunnel junction devices based on epitaxial undoped ferroelectric HfO2 films demonstrate stable switching endurance of over 106 switching cycles, low write voltages of ±3 V, 16 measured resistance states, and neuromorphic capability.
Markus Hellenbrand +13 more
wiley +1 more source
Active Acoustic Metamaterial Based on Helmholtz Resonators to Absorb Broadband Low-Frequency Noise. [PDF]
Hedayati R, Lakshmanan SP.
europepmc +1 more source
SeMSA: a compact super absorber optimised for broadband, low-frequency noise attenuation. [PDF]
McKay A, Davis I, Killeen J, Bennett GJ.
europepmc +1 more source
We use scanning nitrogen vacancy magnetometry to directly image the weak in‐plane magnetic moments in mixed phase BiFeO3 at the nanoscale and quantify the local magnetic moments to be 18.8±2.0 μB/nm2 in the rhombohedral‐like phase and 1.5±0.6 μB/nm2 in the well‐known non‐magnetic tetragonal‐like phase.
Lei Wang +14 more
wiley +1 more source

