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physical characterization techniques (differential scanning calorimetry, dynamic light scattering, small angle neutron and/or x-ray scattering) to characterize the DIBs; and (3) Develop/implement image
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at the Chinese Academy of Sciences (ITP-CAS) (https://english.itp.cas.cn ) is calling for application for a few postdoctoral fellow positions in 2026. Research areas include but not limited to: 1) Theoretical
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the dynamics of ultracold collisions and the properties of ultracold molecules. They will develop quantum-mechanical scattering and bound-state methods and apply them to a variety of ultracold atomic and
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on this project, you will: Design and Model : Develop novel concepts for integrating photonic systems (e.g., laser-based, integrated optic components) with advanced microwave scattering/diagnostic
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many-body physics with ultracold polar molecules Controlling collisions between laser-cooled molecules and atoms The grants are in collaboration with the experimental groups of Prof Simon Cornish (Durham
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separation techniques (AF4, SEC) and light-scattering analysis (MALS, DLS); Demonstrated experience in peptide/protein characterization using AF4-MALS, SEC-MALS, and high-resolution mass spectrometry; Strong
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scattering and by pump-and-probe methods of standard and topological phonons in silicon and 2D materials; Advance experimental methods to study topological phonon waveguides and their coupling to phonon
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primarily focus on the theme of Scattering for Catalysis, carrying out experiments on the creation of Al projectiles by laser ablation and their reactions with fluorinated liquid surfaces. The aim is to
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the dynamics of ultracold collisions and the properties of ultracold molecules. They will develop quantum-mechanical scattering and bound-state methods and apply them to a variety of ultracold atomic and