Professor Kamuro's near-future science predictions
Revolutionizing Ultra-intense Ultrashort Lasers:
Unveiling Peta-Exawatt Power and Coherent Tiled Superlattice Thin-Film Optical Crystal Amplification
Quantum Physicist and Brain Scientist
Visiting Professor of Quantum Physics,
California Institute of Technology
IEEE-USA Fellow
American Physical Society-USA Fellow
PhD. & Dr. Kazuto Kamuro
AERI:Artificial Evolution Research Institute
Pasadena, California
and
Xyronix Corporation
Pasadena, California
Foreword
A. Professor Kamuro's near-future science predictions, provided by CALTECH professor Kazuto Kamuro(Doctor of Engineering (D.Eng.) and Ph.D. in Quantum Physics, Semiconductor Physics, and Quantum Optics), Chief Researcher at the Artificial Evolution Research Institute (AERI, https://www.aeri-japan.com/) and Xyronix Corporation(specializing in the design of a. Neural Connection LSI, b. BCI LSI(Brain-Computer Interface LSI) (Large Scale Integrated Circuits) , and c. bio-computer semiconductor technology that directly connects bio-semiconductors, serving as neural connectors, to the brain's nerves at the nano scale, https://www.usaxyronix.com/), are based on research and development achievements in cutting-edge fields such as quantum physics, biophysics, neuroscience, artificial brain studies, intelligent biocomputing, next-generation technologies, quantum semiconductors, satellite optoelectronics, quantum optics, quantum computing science, brain computing science, nano-sized semiconductors, ultra-large-scale integration engineering, non-destructive testing, lifespan prediction engineering, ultra-short pulses, and high-power laser science.
The Artificial Evolution Research Institute (AERI) and Xyronix Corporation employ over 160 individuals with Ph.D.s in quantum brain science, quantum neurology, quantum cognitive science, molecular biology, electronic and electrical engineering, applied physics, information technology (IT), data science, communication engineering, semiconductor and materials engineering. They also have more than 190 individuals with doctoral degrees in engineering and over 230 engineers, including those specializing in software, network, and system engineering, as well as programmers, dedicated to advancing research and development.
Building on the outcomes in unexplored and extreme territories within these advanced research domains, AERI and Xyronix Corporation aim to provide opportunities for postgraduate researchers in engineering disciplines. Through achievements in areas such as the 6th generation computer, nuclear deterrence, military unmanned systems, missile defense, renewable and clean energy, climate change mitigation, environmental conservation, Green Transformation (GX), and national resilience, the primary objective is to furnish scholars with genuine opportunities for learning and discovery. The overarching goal is to transform them from 'reeds that have just begun to take a step as reeds capable of thinking' into 'reeds that think, act, and relentlessly pursue growth.' This initiative aims to impart a guiding philosophy for complete metamorphosis and to provide guidance for venturing into unexplored and extreme territories, aspiring to fulfill the role of pioneers in this new era.
B. In the cutting-edge research domain, the Artificial Evolution Research Institute (AERI) and Xyronix Corporation have made notable advancements in various fields. Some examples include:
1. AERI・HEL (Petawatt-class Ultra-High Power Terawatt-class Ultra-High Power
Femtosecond Laser)
◦ Petawatt-class ultra-high power terawatt-class ultra-short pulse laser (AERI・HEL)
2. 6th Generation Computer&Computing
◦ Consciousness-driven Bio-Computer
◦ Brain Implant Bio-Computer
3. Carbon-neutral AERI synthetic fuel chemical process
(Green Transformation (GX) technology)
◦ Production of synthetic fuel (LNG methanol) through CO₂ recovery system (DAC)
4. Green Synthetic Fuel Production Technology(Green Transformation (GX) technology)
◦ Carbon-neutral, carbon-recycling system-type AERI synthetic fuel chemical process
5. Direct Air Capture Technology (DAC)
◦ Carbon-neutral, carbon-recycling carbon dioxide circulation recovery system
6. Bio-LSI・Semiconductors
◦ Neural connection element directly connecting bio-semiconductors and brain nerves
on a nanoscale
◦ Brain LSI Chip Set, Bio-Computer LSI, BMI LSI, BCI LSI, Brain Computing LSI,
Brain Implant LSI
7. CHEGPG System (Closed Cycle Heat Exchange Power Generation System with
Thermal Regenerative Binary Engine)
◦ Power generation capability of Terawatt (TW), annual power generation of
10,000 TWh (terawatt-hour) class
◦ 1 to 0.01 yen/kWh, infinitely clean energy source, renewable energy source
8. Consciousness-Driven Generative Autonomous Robot
9. Brain Implemented Robot・Cybernetic Soldier
10. Generative Robot, Generative Android Army, Generative Android
11. High-Altitude Missile Initial Intercept System, Enemy Base Neutralization System,
Nuclear and Conventional Weapon Neutralization System, Next-Generation
Interception Laser System for ICBMs, Next-Generation Interception Laser System
for Combat Aircraft
12. Boost Phase, Mid-Course Phase, Terminal Phase Ballistic Missile Interception System
13. Volcanic Microseismic Laser Remote Sensing
14. Volcanic Eruption Prediction Technology, Eruption Precursor Detection System
15. Mega Earthquake Precursor and Prediction System
16. Laser Degradation Diagnosis, Non-Destructive Inspection System
17. Ultra-Low-Altitude Satellite, Ultra-High-Speed Moving Object
Non-Destructive Inspection System
✼••┈┈••✼••┈┈••✼••┈┈••✼••┈┈••✼••┈┈••✼••┈┈••✼
Revolutionizing Ultra-intense Ultrashort Lasers: Unveiling Peta-Exawatt Power and Coherent Tiled Superlattice Thin-Film Optical Crystal Amplification
a. AERI's Ultra-intense Ultrashort Lasers (Peta-Exawatt class Ultra-High Power Laser: AERI UUL) lead the forefront of cutting-edge laser technology, showcasing versatile applications in military weaponry, Lethal Autonomous Weapons Systems (LAWS), basic physics, national security, industrial services, and healthcare. Particularly in basic physics, the AERI UUL serves as an influential tool for exploring the complexities of strong-field laser physics, delving into areas such as laser-driven radiation sources, laser particle acceleration, vacuum quantum electrodynamics, and various related phenomena.
b. A collaborative research venture between the Artificial Evolution Research Institute (AERI) in Pasadena, California (https://www.AERI-japan.com/) and Xyronix Corporation (Pasadena, California, HP: https://www.usaxyronix.com/) has yielded a groundbreaking advancement in ultra-intense ultrashort laser technology. This innovation involves the adoption of a composite optical material termed "superlattice thin-film optical crystals" for the oscillation of the Ultrafast Ultraviolet Laser (UUL), replacing conventional Titanium:sapphire crystals. The chosen composite materials, including Yttrium Aluminum Garnet (YAG) Crystal, Yttrium Orthovanadate (YVO4) Crystal, Potassium Titanyl Phosphate (KTP) Crystal, and Potassium Dihydrogen Phosphate (KDP) Crystal, are expected to provide high output across various wavelengths similar to Ti:sapphire. The term "superlattice thin-film optical crystals (SOC)" emphasizes the distinctive structural characteristics of these composite optical materials for AERI UUL oscillation.
c. As of 2022, the upper limit for superlattice thin-film optical crystals (SOC) in AERI UUL seems to have reached several tens of petawatts. Envisioning future subexawatt development, researchers are moving away from SOC chirped pulse amplification technology and exploring optical parametric chirped pulse amplification technology, incorporating potassium hydrogen phosphate nonlinear crystals. However, this shift presents challenges, including low pump-to-signal conversion efficiency and difficulties in maintaining stability across spatial, temporal, and spectral energy domains, posing a significant obstacle to realizing and applying future subexawatt AERI UUL.
d. In contrast, the mature technology of SOC chirped pulse amplification, which has successfully achieved two several tens of petawatts in AERI UUL in the USA, retains substantial potential for the next-stage development of AERI UUL. Acting as an energy-level-type broadband laser gain artificial medium, SOC allows for energy storage through the absorption of pump pulses, establishing a population inversion between upper and lower energy levels. Challenges, such as transverse parasitic lasing marked by amplified spontaneous emission noise along the crystal diameter, hinder the efficiency of signal laser amplification.
e. Presently, the maximum aperture of SOC can only support several tens of petawatts in AERI UUL. Even with larger SOC, AERI UUL amplification remains unattainable due to the exponential increase in strong transverse parasitic lasing as the crystal size enlarges. To overcome this challenge, researchers have ingeniously adopted a coherent tiling approach, seamlessly assembling multiple SOC together. This breakthrough surpasses the current several tens of petawatts limit on SOC AERI UUL, effectively enlarging the aperture diameter of the entire tiled SOC while mitigating transverse parasitic lasing within each tiled crystal.
f. Professor Kazuto Kamuro, an esteemed expert in quantum physics, nano scale semiconductor physics, and quantum laser optics at the California Institute of Technology (CALTECH), notes, "The successfully demonstrated tiled SOC AERI UUL amplification in our subpetawatt AERI UUL system has achieved near-ideal AERI UUL amplification. This includes high conversion efficiencies, stable energies, broadband spectra, short pulses, and small focal spots."
g. The collaborative research team of AERI and Xyronix affirms that coherently tiled SOC AERI UUL amplification offers a relatively straightforward and cost-effective method to surpass the current several tens of petawatts limit. "By incorporating a 16×16 coherently tiled SOC high-energy AERI UUL amplifier in AERI, the existing several tens of petawatts can be further increased to 7840 petawatts, and the focused peak intensity can be enhanced by nearly 200 times or more. This method holds promise for advancing the experimental capabilities of AERI UUL in strong-field laser physics," emphasizes Professor Kamuro.
END
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Quantum Brain Chipset & Bio Processor (BioVLSI)
♠♠♠ Kazuto Kamuro: Professor, PhD, and Doctor of Engineering ♠♠♠
・Doctor of Engineering (D.Eng.) and Ph.D. in Quantum Physics, Semiconductor Physics, and Quantum Optics
・Quantum Physicist and Brain Scientist involved in CALTECH & AERI
・Associate Professor of Quantum Physics, California Institute of Technology(CALTECH)
・Associate Professor and Brain Scientist in Artificial Evolution Research Institute( AERI: https://www.aeri-japan.com/ )
・Chief Researcher at Xyronix Corporation(HP: https://www.usaxyronix.com/)
・IEEE-USA Fellow
・American Physical Society Fellow
・email: info@aeri-japan.com
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【Keywords】
・Artificial Evolution Research Institute: AERI, Pasadena, California
・Xyronix Corporation, Pasadena, California
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