Quantum chip stores memory as vibrations to shrink hardware
Researchers at ETH Zurich have developed a quantum computing architecture that stores memory as vibrations instead of bulky electromagnetic resonators. The approach exponentially reduces the hardware needed to separate processing and memory.
- Quantum chip memory is stored as mechanical vibrations
- Approach replaces bulky electromagnetic resonators
- Architecture exponentially cuts hardware volume
- Work comes from researchers at ETH Zurich
Read next
Science