Abstract: became central to this progress, enabling coherent links between optical and microwave domains, high-precision spectroscopy, and state-of-the-art time and frequency dissemination. In this presentation, Menlo Systems will showcase the latest developments in frequency comb technology tailored to the needs of quantum science and optical metrology. We will detail advancements in ultra-low...
内容: In the recent breakthrough result of Slofstra and Mastel (STOC'24), they show that there is a two-player one-round perfect zero-knowledge MIP* protocol for RE. We build on their result to show ...
内容: We investigate the ground-state phases of ultracold gases composed of bosonic microwave-shielded polar molecules (MSPMs). Using a translational symmetry-breaking variational ansatz with Jastrow...
内容: Quantum error correction is a key approach to achieve large-scale quantum computing. Due to the low encoding rate of surface codes, fault-tolerant quantum computing schemes based on surface cod...
内容: Preparing high-accuracy logical magic states is crucial for fault-tolerant quantum computation. In this talk, we will introduce our recent logical T state preparation protocol (arXiv:2503.18657...
内容: Magic states are essential yet resource-intensive components for realizing universal fault-tolerant quantum computation. Preparing magic states within emerging quantum low-density parity-check ...