“Within that millimeter cube, we demonstrated there are about at least a billion of these memories — classical memories, traditional memories — based on atoms,” Zhong said.
I assume he is referring to individual bits here. So 109 bits/mm3. If that is the case, then this "crystal memory" is not actually very impressive when you think about it.
Let's say for a given ReRAM geometry you get a single bit into a square 100nm x 100nm. That's 1.0 x 10-14 m2, or 1.0 x 10-8 mm2, or 100 x 106 bits/mm2. So such a memory would already be 1/10th the capacity with just a single layer. If we stack 10 layers, allowing 100nm per layer, then we arrive at the same packing density as the crystal memory, of 1 Gbit/mm3.
I think WBT should ultimately achieve at least an order of magnitude better than this, and without the need of a sophisticated optical apparatus to carry out read and write operations.
All IMO.
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