Raman instrument
Spontaneous Raman measurements were performed on the UT-3 Raman spectrometer (see Fig. S1)46. This triple-grated spectrometer is fully achromatic due to the use of reflective optics. Excellent stray light rejection is achieved…
Spontaneous Raman measurements were performed on the UT-3 Raman spectrometer (see Fig. S1)46. This triple-grated spectrometer is fully achromatic due to the use of reflective optics. Excellent stray light rejection is achieved…
The relative flow and types of fresh geopolymer containing fine aggregates, coarse aggregates, Ag-PM-WCNTs, GGBFS, CQD, and PCEP-BSP, as well as the reference composite, are shown in Fig. 3. Notably, the formwork, which is…
• Physics 18, s97
A thermal version of a transistor could help control heat flow in cryogenic quantum systems.
Many quantum technologies function only at ultralow temperatures. Managing the flow of heat in these systems…
Schollwöck, U. The density-matrix renormalization group in the age of matrix product states. Ann. Phys. 326, 96–192 (2011).
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Orús, R. Tensor networks for complex…
Data from the CONUS+ run 1 analysis presented in this study correspond to the period from November 2023 to July 2024. Three of the four detectors, named C2, C3 and C5, are considered for analysis with a total active mass of…
Figure 1; Schematic crystal structures of (a) LiInS₂ and (b) LiInTe₂. (a) LiInS₂ crystallizes in an orthorhombic system with space group Pna2₁ (No. 33). In this structure, the lithium (Li) atoms typically occupy the…
We utilize three types of monodisperse beads with different particle surface frictions to prepare disordered granular packings through mechanical tapping. The bead types include acrylonitrile…
In our experiment, the differential conductance G is measured in an out-of-wire tunneling setup in a GaAs/Al0.33Ga0.67As double-well heterostructure in Fig. 1, with a finite, in-plane magnetic field applied perpendicular to the…
Pion has two GFFs which are defined as18,20,59,60,61
$$ \left\langle {\pi }^{a}({p}^{{\prime} })\left\vert {\hat{T}}^{\mu \nu }\right\vert {\pi }^{b}(p)\right\rangle \\ \;\;=\frac{{\delta }^{ab}}{2}\left[{A}^{\pi }(t){P}^{\mu…