Successful Entanglement of Cold Atoms Could Pave Way For Optical-Lattice Quantum Computer https://thequantuminsider.com/?p=2357962 #Research #china #JianWei_Pan #lattice #scalable_quantum_computing #ultracold_atoms #quantumdaily Insider Brief Scientists entangled one-dimensional chains of ten atoms and two-dimensional groups of eight atoms. The University of Science and Technology of China team, led by Jian-Wei Pan, developed a new technique using a cross-angle spin-dependent optical superlatti
#Research #china #JianWei_Pan #lattice #scalable_quantum_computing #ultracold_atoms #quantumdaily
New Quantum Hardware Approach May Be a ‘Natural’ For Powering up Quantum Algorithms https://thequantuminsider.com/?p=2357906 #Research #Los_Alamos_National_Laboratory #Nikolai_Sinitsyn #Physical_Review_A #ultracold_atoms #quantumdaily Insider Brief Researchers devised a strategy for implementing algorithms in natural quantum interactions that could process a variety of real-world problems faster than classical devices. The natural approach, rather than induced entanglement, requires fewer conne
#Research #Los_Alamos_National_Laboratory #Nikolai_Sinitsyn #Physical_Review_A #ultracold_atoms #quantumdaily
Quantum Simulator Helps Scientists See Charge Carriers Pairing For The First Time https://thequantuminsider.com/?p=2282526 #Research #Germany #Max_Planck_Institute_of_Quantum_Optics #MPQ #Quantum_Simulator #Sarah_Hirthe #Timon_Hilker #ultracold_atoms #quantumdaily Insider Brief Researchers at the Max Planck Institute of Quantum Optics (MPQ) relied on a quantum simulator to observe pairs of charge carriers. These charge carries may be responsible for the resistance-free transport of electric cur
#Research #Germany #Max_Planck_Institute_of_Quantum_Optics #MPQ #Quantum_Simulator #Sarah_Hirthe #Timon_Hilker #ultracold_atoms #quantumdaily