Nuclear-spin swap reportedly extends room-temperature entanglement lifetime up to 240-fold
Phys.org reports that entanglement lasted more than 240 microseconds in nuclear spins after a SWAP-gate transfer in room-temperature silicon carbide, versus just over 1 microsecond in electron spins.
TLDR
Researchers in China extended entanglement’s lifetime in a room-temperature solid-state system by up to a factor of 240, Phys.org reports. The reported results compare more than 240 microseconds in nuclear spins after a SWAP-gate transfer with just over 1 microsecond in electron spins, using silicon carbide.
Nuclear-spin swap reportedly extends room-temperature entanglement lifetime up to 240-fold
Phys.org reports that entanglement lasted more than 240 microseconds in nuclear spins after a SWAP-gate transfer in room-temperature silicon carbide, versus just over 1 microsecond in electron spins.
TLDR
Researchers in China extended entanglement’s lifetime in a room-temperature solid-state system by up to a factor of 240, Phys.org reports. The reported results compare more than 240 microseconds in nuclear spins after a SWAP-gate transfer with just over 1 microsecond in electron spins, using silicon carbide.