An updated overlook at one of the most promising building blocks for quantum technologies: fast and efficient single photon detectors.

An updated overlook at one of the most promising building blocks for quantum technologies: fast and efficient single photon detectors.
Predicting the experimental conditions that enhance coherence times for semiconducting quantum dot hybrid qubits.
A novel scheme for an ultrafast generation of a toroidal moment and a field-free vector potential is uncovered.
A quantum autoencoder via approximate quantum adders in the Rigetti cloud quantum computer is carried out employing up to three qubits.
A train of single-electrons propagating on top of the Fermi sea of a mesoscopic conductor can be used for time-domain spectroscopy of quantum-coherent structures.
A novel solution-processing organic flexible synaptic device with bidirectional linear conductance regulation.
A generalized methodology has been established to guide the design of future soft robotics using intelligent liquids.
Ion transport in nanoscale channels and pores exhibits drastically different properties from those in bulk solution if at least one dimension of the channel approaches the characteristic length scale of the electrostatic, van der Waals, or hydrophobic interactions. In...
A theoretical study of electronic transport in a hybrid junction consisting of an excitonic insulator sandwiched between a normal and a superconducting electrode.
Neuromorphic devices have great potential in the development of multifunctional intelligent artificial perception learning systems.