Demonstrates intra-tweezer Rydberg blockade for microsecond-scale single-atom preparation in 171Yb, reducing multi-atom probability to 1% in 64.8 μs with 58% retention or 75% filling fraction.
High-efficiency loading of 2,400 Ytterbium atoms in optical tweezer arrays,
3 Pith papers cite this work. Polarity classification is still indexing.
years
2026 3representative citing papers
Light-assisted redistribution via blue-detuned pumping during Raman sideband cooling achieves 70-80% single-atom occupancy in optical lattices while retaining over 50% of atoms involved in collisions.
A PC-free FPGA control system achieves 282 μs feedback latency, enabling iterative rearrangement that boosts defect-free 10-atom array success probability from 65.7% to 95.4%.
citing papers explorer
-
Fast single-atom preparation in optical tweezers via Rydberg blockade
Demonstrates intra-tweezer Rydberg blockade for microsecond-scale single-atom preparation in 171Yb, reducing multi-atom probability to 1% in 64.8 μs with 58% retention or 75% filling fraction.
-
Achieving High Filling of an Optical Lattice by Light-Assisted Redistribution of Atoms
Light-assisted redistribution via blue-detuned pumping during Raman sideband cooling achieves 70-80% single-atom occupancy in optical lattices while retaining over 50% of atoms involved in collisions.
-
Low-latency FPGA-based electronic control system for fast preparation of defect-free atom arrays
A PC-free FPGA control system achieves 282 μs feedback latency, enabling iterative rearrangement that boosts defect-free 10-atom array success probability from 65.7% to 95.4%.