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Seagate developing dual-layer, heat-assisted magnetic recording tech for 120TB HDDs - Vimarsana News

Seagate developing dual-layer, heat-assisted magnetic recording tech for 120TB HDDs

Seagate recently introduced its Mozaic 3+ storage platform, which implements HAMR technology for 30TB hard disk drives. The US storage giant is now collaborating with Sony to...

Dual Layer Recording Could Enable 120+TB Hard Disk Drives - Vimarsana News

Dual Layer Recording Could Enable 120+TB Hard Disk Drives

Seagate, NIMS and Tohoku University demonstrated two-layer heat assisted enabling HDDs with 120TB storage capacity or higher in the next few years.

Source: forbes.com
Seagate demonstrates 3D magnetic recording for 120+ TB HDDs — dual-layer media stacks data bits to boost capacity - Vimarsana News

Seagate demonstrates 3D magnetic recording for 120+ TB HDDs — dual-layer media stacks data bits to boost capacity

Seagate, NIMS, and Tohoku University team up for dual-layer HAMR media for HDDs; multi-level HAMR hard drives could significantly increase HDD capacities.

Quantum Breakthrough Leads to the Development of Exceptionally Strong Metals - Vimarsana News

Quantum Breakthrough Leads to the Development of Exceptionally Strong Metals

A quantum mechanics-based approach has been devised by researchers to forecast the ductility of metals, demonstrating notable efficacy in the context of materials used in elevated-temperature circumstances. This novel methodology, emphasizing the significance of localized atomic distortion, enables fast examination of several materials, simplifying the development procedure for sectors such as aerospace and energy.A consortium …

Combining simulations and experiments to get the best out of Fe3Al - Vimarsana News

Combining simulations and experiments to get the best out of Fe3Al

Researchers combined computer simulations and transmission electron microscopy experiments to better understand the ordering mobility and formation of microstructure domains in Fe3Al alloy. They were able to correlate structural changes with heat treatment to understand how particular mechanical behavior can be achieved. This is expected to allow the superelastic properties of Fe3Al to harnessed for the 3D printing of construction materials for absorbing seismic activity.