Publications by authors named "Z Salman"

Article Synopsis
  • Element-specific magnetism studied via synchrotron X-ray spectroscopy helps analyze spin and orbital moments of transition metals and lanthanides in thin films and monolayers.
  • The research introduces a method using X-ray detection of microwave-driven electron paramagnetic resonance to explore quantum-coherent states, which is more sensitive than traditional X-ray methods.
  • Findings from the study of phthalocyanine-based metal complexes suggest new phenomena related to charge trapping, enabling potential detection of coherent superposition states in atomic and molecular spins on various surfaces.
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Background: To enhance the quality of care available for children with central nervous system (CNS) tumors across the world, a systematic evaluation of capacity is needed to identify gaps and prioritize interventions. To that end, we created the pediatric neuro-oncology (PNO) resource assessment aid (PANORAMA) tool.

Methods: The development of PANORAMA encompassed 3 phases: operationalization, consensus building, and piloting.

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The breaking of time-reversal symmetry (TRS) in the normal state of kagome superconductors AVSb stands out as a significant feature, but its tunability is unexplored. Using low-energy muon spin rotation and local field numerical analysis, we study TRS breaking as a function of depth in single crystals of RbVSb (with charge order) and Cs(VTa)Sb (without charge order). In the bulk of RbVSb (>33 nm from the surface), we observed an increase in the internal magnetic field width in the charge-ordered state.

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Strongly-correlated transition-metal oxides are widely known for their various exotic phenomena. This is exemplified by rare-earth nickelates such as LaNiO, which possess intimate interconnections between their electronic, spin, and lattice degrees of freedom. Their properties can be further enhanced by pairing them in hybrid heterostructures, which can lead to hidden phases and emergent phenomena.

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