Double Perovskites for Hydrogen Storage and Optoelectronics
Researchers have explored the potential of double perovskite hydrides, specifically ZMg₂FeH₈ (where Z can be Ca or Be), for hydrogen storage and optoelectronic applications.… more →
Scientists have demonstrated the trapping of photons in a time cavity moving at the speed of light. This breakthrough, published in Nature, marks the first time light has been confined in a dynamic structure traveling at such an extreme velocity. The temporal cavity is created by ultrafast modulation of a medium's refractive index, allowing light to be trapped and propagate along with the cavity itself.
Researchers have explored the potential of double perovskite hydrides, specifically ZMg₂FeH₈ (where Z can be Ca or Be), for hydrogen storage and optoelectronic applications.… more →
A new study has revealed how intrinsic molecular activity can overcome the arrest of particle transport in geometrically confined environments, restoring phase separation.… more →
A recent study has explored how reverberation affects the perceived quality of time-scale modified speech.… more →
A team of researchers has achieved a significant breakthrough in the control and readout of nuclear spin qubits, a key component for quantum computing.… more →
A recent study has demonstrated that controlling partial coherence in electron beams can be an effective tool for manipulating and stabilizing magnetic skyrmions.… more →