Pitt Scientists Are Finding the Flux of Quantum Technology https://thequantuminsider.com/?p=2356311 #Research #Flux #Hong_Koo_Kim #nanophotonics #Pitt #quantum_dots #quantum_flux #University_of_Pittsburgh #University_of_Pittsburgh_Swanson_School_of_Engineering #quantumdaily Insider Brief University of Pittsburgh researchers discovered that a quantum dot emitter traps a large amount of energy. This is the first time a dipole has been studied on the inside. Researchers suggest that the work could
#Research #Flux #Hong_Koo_Kim #nanophotonics #Pitt #quantum_dots #quantum_flux #University_of_Pittsburgh #University_of_Pittsburgh_Swanson_School_of_Engineering #quantumdaily
What Types of Quantum Computers Exist In 2023? https://thequantuminsider.com/?p=2355731 #Exclusives #Slider #business #neutral_atoms #photonic #quantum_computing #quantum_dots #Superconducting #trapped_ions #quantumdaily What are Quantum Computers? Quantum Computers have the potential to solve certain types of problems faster than classical computers. For example, they could eventually be used to solve optimization problems, simulate quantum systems or even factor large numbers, though they can
#Exclusives #Slider #business #neutral_atoms #photonic #quantum_computing #quantum_dots #Superconducting #trapped_ions #quantumdaily
Scientists Flip The Switch on ‘Quantum Light’ Manipulation https://thequantuminsider.com/?p=2351268 #Research #Australia #Natasha_Tomm #photonic #quantum_dots #quantum_light #Sahand Mahmoodian #Switzerland #University_of_Basel #university_of_sydney #quantumdaily Insider Brief Researchers showed they can manipulate and identify small numbers of interacting photons with high correlation. The team added that the new technique could pave the way for advances in practical quantum technology, includi
#quantumdaily #Research #photonic #quantum_light #Australia #Switzerland #quantum_dots #Natasha_Tomm #Sahand #University_of_Basel #university_of_sydney
Diraq, UNSW Researchers Say Spin Control Method Brings Billion-Qubit Quantum Chips Closer https://thequantuminsider.com/?p=2178530 #Research #Andrew_Dzurak #diraq #Nature_Nanotechnology #quantum_dots #silicon #spin #Tuomo_Tanttu #University_of_New_South_Wales #UNSW #quantumdaily Insider Brief UNSW Sydney researchers say they’ve taken another step toward large-scale quantum computers. The research focuses on precisely controlling single electrons nestled in quantum dots that run logic gates. Cri
#Research #Andrew_Dzurak #diraq #Nature_Nanotechnology #quantum_dots #silicon #spin #Tuomo_Tanttu #University_of_New_South_Wales #UNSW #quantumdaily
Researchers Demonstrate High-Visibility Quantum Interference Between Quantum Dots Over 300 Kilometers https://thequantuminsider.com/?p=2024085 #Research #QDs #quantum_dots #quantum_solid_state #ultralow_noise #University_of_Science_and_Technology_of_Science #USTC #quantumdaily Insider Brief Researchers achieved high-visibility quantum interference between two independent quantum dots linked with ~300 km optical fiber. The work addresses one of the most significant challenges: extending the dist
#Research #QDs #quantum_dots #quantum_solid_state #ultralow_noise #University_of_Science_and_Technology_of_Science #USTC #quantumdaily
Researchers Report Coherent Manipulation of Spin Qubits at Room Temperature https://thequantuminsider.com/?p=1827011 #Research #china #Chinese_Academy_of_Sciences #Colloidal_quantum_dots #Ministry_of_Science_and_Technology_of_China #National_Natural_Science_Foundation_of_China #QD #quantum_dots #room_temperature #spin_qubits #quantumdaily Insider Brief Researchers reported the successful initialization, coherent quantum-state control and readout of spins at room temperature using solution-grown
#Research #china #Chinese_Academy_of_Sciences #Colloidal_quantum_dots #Ministry_of_Science_and_Technology_of_China #National_Natural_Science_Foundation_of_China #QD #quantum_dots #room_temperature #spin_qubits #quantumdaily