An Er3+ spin sensor in CaWO4 measures the hyperfine NMR spectrum of a single 93Nb nuclear spin-9/2 with Hertz resolution, determining its site, position, quadrupolar tensor, and two new terms in the spin Hamiltonian.
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Local perturbations induce synthetic twist defects in the surface code; simplified spin and Majorana models plus numerics locate the driving quantum phase transition.
A multi-reaction DNA recipe provides independent kinetic control over each colloidal subunit type, enabling the same building blocks to form distinct kinetically trapped core-shell clusters with tunable compositions and larger feature sizes.
Amorphous silicon metasurfaces enable photo-thermally tunable photon-pair generation through SFWM, achieving rates above 3.8 kHz with high purity and deviations from quadratic power scaling due to heating-induced resonance shifts.
Derives a recoil-resolved Hamiltonian from relativistic QED showing free electrons form programmable qudits usable for quantum computation, black-hole analogue models, and hybrid quantum light states.
QAssemble is a new pure-Python package for quantum many-body calculations that achieves up to 60x speedup via vectorization and discrete Lehmann representation while validating on graphene.
citing papers explorer
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Precision hyperfine spectroscopy of an individual nuclear-spin-9/2
An Er3+ spin sensor in CaWO4 measures the hyperfine NMR spectrum of a single 93Nb nuclear spin-9/2 with Hertz resolution, determining its site, position, quadrupolar tensor, and two new terms in the spin Hamiltonian.
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Emergence of synthetic twist defects in the surface code under local perturbation
Local perturbations induce synthetic twist defects in the surface code; simplified spin and Majorana models plus numerics locate the driving quantum phase transition.
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A DNA-encoded recipe to direct multi-stage colloidal assembly
A multi-reaction DNA recipe provides independent kinetic control over each colloidal subunit type, enabling the same building blocks to form distinct kinetically trapped core-shell clusters with tunable compositions and larger feature sizes.
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Photo-Thermally Tunable Photon-Pair Generation in Dielectric Metasurfaces
Amorphous silicon metasurfaces enable photo-thermally tunable photon-pair generation through SFWM, achieving rates above 3.8 kHz with high purity and deviations from quadratic power scaling due to heating-induced resonance shifts.
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Quantum computing and quantum optics with recoiled free electrons
Derives a recoil-resolved Hamiltonian from relativistic QED showing free electrons form programmable qudits usable for quantum computation, black-hole analogue models, and hybrid quantum light states.
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QAssemble: A Pure Python Package for Quantum Many-Body Theory
QAssemble is a new pure-Python package for quantum many-body calculations that achieves up to 60x speedup via vectorization and discrete Lehmann representation while validating on graphene.