Showing posts with label diamond. Show all posts
Showing posts with label diamond. Show all posts

Saturday, April 12, 2025

Diamonds and holograms in microchip production.



"A NIMS research team has successfully developed the world’s first n-channel diamond MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor), a breakthrough that enables the creation of diamond-based CMOS (Complementary Metal-Oxide-Semiconductor) integrated circuits for high-performance use in extreme environments. This innovation leverages diamond’s exceptional properties, such as high thermal conductivity and radiation resistance, paving the way for energy-efficient electronics capable of operating under intense heat and radiation. (Artist’s concept.) Credit: SciTechDaily.com"(ScitechDaily, Diamond Devices Break Limits: Scientists Unveil New High-Performance Nuclear-Grade Transistor)


Diamond devices can revolutionize electronics. They can act as transistors. But those diamonds can also control things like resistance in materials. The diamond can act as a phonon that can send acoustic waves into the semiconductor. That thing allows the system to control electricity in the semiconductor better. The diamond-phonons can create extremely strong pressure in an extremely small area. That thing can turn the point into superconducting at lower temperatures than normal pressure and temperature allow. 

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"(Left) Atomic force microscope image of diamond epilayer surface morphology. (Middle) Optical microscope image of the diamond MOSFET. (Right) Performance of the MOSFET measured at 300°C. The drain current increased when the gate voltage (Vg) was increased from -20 V (indicated by a black line) to 10 V (indicated by a yellow line). Credit: Satoshi Koizumi, Meiyong Liao National Institute for Materials Science" (ScitechDaily, Diamond Devices Break Limits: Scientists Unveil New High-Performance Nuclear-Grade Transistor)




"Researchers at UMass Amherst developed a novel method for aligning 3D semiconductor chips using laser light and concentric metalenses, projecting holograms that reveal even atomic-scale misalignments. This breakthrough could reduce chip manufacturing costs, enable advanced 3D electronics, and lead to compact, affordable sensors." (ScitechDaily, Laser Holograms Could Revolutionize 3D Chip Manufacturing)


"Simulated and measured results of different sizes of lateral misalignment, from 150 nm to 1 micrometer (or 1,000 nm). Credit: Amir Arbabi"  (ScitechDaily, Laser Holograms Could Revolutionize 3D Chip Manufacturing)

"[Left] Semiconductor layers are stacked using concentric metalenses as alignment marks. [Right] Light shines through these marks to project a hologram. The alignment or misalignment of the lenses dictates the hologram’s appearance. Credit: Amir Arbabi"  (ScitechDaily, Laser Holograms Could Revolutionize 3D Chip Manufacturing)




Simulated and measured results of different sizes of misalignment in the gap between two layers, from 1 micrometer (or 1,000 nm) to 3 µm. Credit: Amir Arbabi  (ScitechDaily, Laser Holograms Could Revolutionize 3D Chip Manufacturing)

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That makes it possible to create mass memory where the computer can put the data. And when those memories are not needed the system can remove pressure and that removes the superconductor. This makes electronics safe. The diamond can also be used as SONAR. Which can search for non-wanted potholes and scratches from microchips' surfaces.  

The diamond can also clean the layers by sending acoustic waves to it. That kind of system can be used to create ultra-clean layers. 

Another interesting thing that can revolutionize microchip production is holograms. Holograms can test does the microchip fits its position on the microcircuit. Holograms can also test the non-wanted anomalies from the layers. The reflection of the holograms uncovers if there is some kind of error in the structure. That thing makes it possible to create more advanced and more effective microchips. 

Those holograms can also be used to illuminate the film where the system makes a route for electricity. That kind of microchip manufacturing systems are more advanced and effective than traditional systems. 


https://scitechdaily.com/diamond-devices-break-limits-scientists-unveil-new-high-performance-nuclear-grade-transistor/ 

https://scitechdaily.com/laser-holograms-could-revolutionize-3d-chip-manufacturing/


Friday, November 15, 2024

The new winds for diamond-based quantum computers



The idea of diamond-based quantum computers is not a very new thing. The idea of those systems is that. They use some abilities in diamonds to make the qubit. There are two main things. That can make diamonds suitable for quantum computers. 

The first thing is acoustic qubits. Their information travels from one place to another. Benefiting the acoustic-, or phonon waves. Or the system can use the chemical bonds between carbon atoms as the quantum tunnels. The quantum entanglements would travel through those channels. And the diamonds can protect them against outcoming radiation. 

The long-range quantum entanglement would be possible if the researchers could remove things like heat from the route of the quantum entanglement. If we think of the possibility of making a quantum tunnel through the air or space, we could transport information at a very high speed from one place to another. 

The system can involve two light strings that travel around the center laser rays. The system would close the outside effects from that hollow laser beam using the electromagnetic systems that remove particles from the laser channel. The high-power laser ray can make that thing. Then the system makes the magnetic channel around that laser channel that transports all ions and quantum fields from around it. That thing makes it possible that there is a so-called false vacuum or weaker quantum fields in that channel than around it. 




"Developing a diamond-based quantum computer, the SPINNING project focuses on superior performance metrics like lower error rates and extended coherence times compared to traditional models. Recent breakthroughs include long-distance qubit entanglement, showcasing the potential for practical, scalable quantum computing applications. Credit: SciTechDaily.com" (ScitechDaily, Discover the Quantum Power Hidden Inside Diamonds)




"By employing quasicrystals, researchers at Aalto University have found a new way to enhance data transmission using light vortices, potentially multiplying the current capacity of optic fibers by 8 to 16 times. Credit: SciTechDaily.com" (ScitechDaily, Laser Storms: Physicists Create “Light Hurricanes” for 16x Faster Data Transmission)

Light tornadoes can travel through channels between carbon atoms in diamond. And maybe someday. The system can use quantum tunneling to transport information into those channels. 





"Researchers have developed a material with unique magnetic behaviors characteristic of quantum spin liquids, opening up new avenues for exploring quantum states of matter. Credit: SciTechDaily.com" (ScitechDaily, New “Quantum Spin Liquid” Discovery Opens Doors to Uncharted Magnetic Realms)

The acoustic system can create a channel through the water. The photon travels in that channel with speed that is speed of light in the air. That speed is faster than the speed of light in water. 

So can quantum entanglement transport information faster than light? It can transport information faster than it travels in the medium. But it cannot transport information faster than light travels in a vacuum. It's possible to make the vacuum channels in the quantum tunnels in the diamonds. The diamond-based quantum computers can keep diamonds in liquid hydrogen tanks in gold mines their researchers research neutrinos. There those systems are well-protected against outcoming effects. 

As I wrote many times the quantum entanglement can transport information faster than it travels in a normal environment. In that case, the system removes the medium from the information tack. And because the quantum fields and material are thinner than outside this electromagnetic wormhole the information can travel faster than otherwise.  In the same way, acoustic systems can make channels through liquid like water. The light travels faster in that channel than it travels in water. 

The liquid hydrogen can also protect the quantum entanglement. The system can create quantum whirls that act as acoustic wormholes and the quantum entanglement can pulled through that channel. Liquid hydrogen very good insulator against radiation. Liquid hydrogen can remove electromagnetic resonance from quantum computers. In simplest models, the quantum computer will sink into the liquid hydrogen. 

Quantum tunneling like photonic or light tornadoes are tools that can make those quantum computers possible. The idea is that the light tornado that travels inside another laser ray can also carry information in the form of an electron or photon qubit. The system acts like the Archimedean screw but the whirling light waves replace physical structures. The qubits, or qubit photons can travel between those light waves or light strings. And that could make it possible to transport information between two objects. 


https://scitechdaily.com/laser-storms-physicists-create-light-hurricanes-for-16x-faster-data-transmission/

https://scitechdaily.com/discover-the-quantum-power-hidden-inside-diamonds/

https://scitechdaily.com/new-quantum-spin-liquid-discovery-opens-doors-to-uncharted-magnetic-realms/


Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...