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the quantum regime, angular momentum can be used to encode arbitrarily large nJℏ-quanta within a single state. While the total angular momentum can, in certain cases, be separated into spin and orbital
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. Recently, a breakthrough platform for exploring this frontier has been brought by semiconducting moiré materials (SMMs) consisting of twisted or lattice-mismatched monolayers of van der Waals (vdW) crystals
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evaluation and of novel substrate analogues for esterases, including slowly cleavable and photoswitchable compounds; and 2) static single-crystal and serial-synchrotron crystallography of these enzymes in
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order of 1 in subcycle timescales. This approach enables entirely new wave phenomena, including time reflection, dynamic dispersion engineering, photonic time crystals and the dynamic Casimir effect