A carbon nanotube microtoroid platform with Tomonaga-Luttinger liquid protection achieves chiral spin-momentum locking for nonreciprocal spin-photon interfaces with cooperativities above 100 and chiral contrast over 20 dB.
Title resolution pending
5 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
quant-ph 5verdicts
UNVERDICTED 5roles
background 1polarities
background 1representative citing papers
Experimental demonstration of five normal modes in fiber-linked atom-cavity systems, with the cavity dark mode used to achieve remote excitation and nonlocal saturation of atoms.
Derives optimal time-dependent cavity linewidth modulations to maximize absorption and emission efficiency in spin ensemble memories, establishing an upper bound in the narrow bandwidth regime and a critical bandwidth threshold.
A Wiesner-style quantum token encoded in diamond color-center states achieves >99% gate fidelity and near-MHz acceptance rates in a model that includes realistic imperfections and cloning resistance.
Cavity-enhanced tripartite interactions are proposed to enable direct extraction of photon and phonon vacuum fluctuations without free parameters and to produce high-occupancy nonclassical quantum emitters via decay-enhanced blockade.
citing papers explorer
-
A Universal Topological Platform for Nonreciprocal Spin-Photon Interface in Solid-State Quantum Networks
A carbon nanotube microtoroid platform with Tomonaga-Luttinger liquid protection achieves chiral spin-momentum locking for nonreciprocal spin-photon interfaces with cooperativities above 100 and chiral contrast over 20 dB.
-
Cavity dark mode of distant coupled atom-cavity systems
Experimental demonstration of five normal modes in fiber-linked atom-cavity systems, with the cavity dark mode used to achieve remote excitation and nonlocal saturation of atoms.
-
Optimal absorption and emission of itinerant fields into a spin ensemble memory
Derives optimal time-dependent cavity linewidth modulations to maximize absorption and emission efficiency in spin ensemble memories, establishing an upper bound in the narrow bandwidth regime and a critical bandwidth threshold.
-
Secure Quantum Token Processing with Color Centers in Diamond
A Wiesner-style quantum token encoded in diamond color-center states achieves >99% gate fidelity and near-MHz acceptance rates in a model that includes realistic imperfections and cloning resistance.
-
Unveiling Vacuum Fluctuations and Nonclassical States with Cavity-Enhanced Tripartite Interactions
Cavity-enhanced tripartite interactions are proposed to enable direct extraction of photon and phonon vacuum fluctuations without free parameters and to produce high-occupancy nonclassical quantum emitters via decay-enhanced blockade.