Leo Didomenico

Leo Didomenico Email and Phone Number

Chief Executive Officer @ Orinda, CA, US
Orinda, CA, US
Leo Didomenico's Location
Orinda, California, United States, United States
Leo Didomenico's Contact Details

Leo Didomenico personal email

n/a
About Leo Didomenico

My mission is to Power, Protect, and Propel humanity into the future using the transformative potential of directed light energy.As an engineer and physicist with extensive experience in early-stage technology development, I specialize in merging theoretical physics with practical, groundbreaking innovations. My expertise spans applied technology development, mathematical modeling, patent writing, and intellectual property management, alongside digital inbound marketing and business development. Recently, I became an XPrize competitor, pioneering a light-based solution to extinguish wildfires using electronically controlled fluidic meta-materials. I also work on cutting-edge applications like beamed energy propulsion for aerospace and national defense. In previous roles, I’ve served as a principal investigator for DARPA, advancing solar-pumped fiber-laser arrays, and have been involved in field-testing high-energy laser weapon systems for the government.I’ve contributed novel hardware concepts to national laboratories, academic institutions, and industry across various domains, including ultra-efficient solar trackers, plasmonic photovoltaics, high-temperature superconductivity, radar systems, sensors, adaptive RF antennas, and advanced electromagnetic propulsion systems. My work also includes millimeter-wave friend-or-foe detection, microwave phase conjugation, cryogenic electronics, and cutting-edge techniques in light steering and RF technologies.Driven by a relentless pursuit to challenge the status quo and think differently, I aim to create a better future for humanity. If you share a passion for changing the world and have the technical or business acumen to make it happen, connect with me on LinkedIn. I’m also dedicated to mentoring aspiring entrepreneurs.

Leo Didomenico's Current Company Details
Phasor Technologies Inc

Phasor Technologies Inc

Chief Executive Officer
Orinda, CA, US
Leo Didomenico Work Experience Details
  • Phasor Technologies Inc
    Chief Executive Officer
    Phasor Technologies Inc
    Orinda, Ca, Us
  • Metaphotonix Inc
    Chief Executive Officer
    Metaphotonix Inc Sep 2022 - Present
    At MPI believe that earth is special, as it is home to the only life known anywhere in the universe. This is worth protecting! Our purpose is to build an ascending, resilient, and wise civilization that is powered & orchestrated by light. To accomplish this we bend, twist, & structure light for life-transforming practical use by organizing trillions of mediating nanoparticles with light. This is called optometaphoresis (OMP). Applications include concentrating solar energy, augmented & virtual reality, LiDAR, quantum computing, beamed energy aircraft, 6G internet connectivity, remote sensing and more.
  • Giant Leap Technologies
    Ceo
    Giant Leap Technologies Feb 2013 - Jun 2023
    I am the founder of Giant Leap Technologies (GLT), which is a small research company dedicated to power, protect, and propel humanity into the future with directed light energy. At GLT we are literally developing a light bending nanotechnology called Optometaphoresis (or less scientifically: Particle Swarm Optics) for programmable light refraction, reflection, diffraction, guiding, phase modulation, beam steering, and lasing. Potential end-use applications are wide ranging and include • Solar energy• Augmented Reality • Artificial Intelligence • Quantum Computing • Beamed energy-delivery networks • High-power laser beam steering• LiDAR for autonomous vehicles• Large area adaptive telescopes• Light management for buildings• Beamed energy propulsion• Powering drones in flight • Laser communications• Indoor vertical farming• Non-imaging optics• Imaging optics• Medical diagnostics• Inertial sensors• Color displays• 3D PrintingParticle swarm optics is based on the programmable and electronically coordinated manipulation of tens of thousands of nanoparticles per cubic micron. The nanaoparticles may be dielectrics, metals, quantum dots, plasmonic dots, and others. For example, dielectric nanoparticles of a size much smaller than the wavelength of visible light, can be suspended in a liquid to form a colloid that is controlled to scatter light where desired by applying an oscillating voltage across the colloid.GLT takes projects from initial concept to proof-of-principle prototyping to build-test-build engineering, to field-testing and low-rate production. Subsequently, GLT may licenses the technology, create spin-off area-specific companies and joint venture with large established companies.
  • Giant Leap Solar Inc
    Ceo
    Giant Leap Solar Inc 2016 - Dec 2018
    I was the CEO of Giant Leap Solar (GLS). At GLS we believe that the next major advance in solar energy and climate change mitigation lies in liberating nature’s secrets for electronic (non-mechanical) control of sunlight. We seek to reduce energy costs and fossil fuel emissions up to 90% with solar energy captured by digital liquid mirrors, which become visible or invisible based on the state of opto-microfluidic circuits. Electronically controlling sunlight is a hard engineering problem that has not had a solution – until now. In particular, we have demonstrated a liquid “invisibility cloak”, which is analogous to the invisibility cloak depicted in the popular “Harry Potter” books, but is formed by liquid-state chemicals instead of a fabric cloak. The optical liquid is embedded within Digital Glass™ , which is a meter-scale glass panel with tiny micron-scale capillaries inside. The optical liquid is used to hide and reveal micro-scale mirrors and digitally steer sunlight towards a solar receiver. Besides solar energy Digital Glass has potential applications in steering high energy laser energy for defense, robotic vision, LIDAR for autonomous vehicles and many other high-impact areas. I developed and successfully demonstrated early prototypes of this type of electronic (non-mechanical) light steering device using microfluidics to redirect light over extremely large angles. When miniaturized and fully refined, with the help of our manufacturing partner Lawrence Livermore National Laboratory (LLNL), the technology will move solar energy harvesting into the digital age.GLS, is bringing solar energy into the digital age to drastically reduce the cost of solar energy and to help reduce carbon emissions and climate change!
  • Xtreme Energetics
    President And Cto
    Xtreme Energetics May 2005 - Jul 2012
    I founded a solar energy company called Xtreme Energetics (XE). XE was a solar energy company that specialized in the development of electro-mechanical sun trackers that are integrated into a concentrating solar-panel. Additional development of ultra-efficient solar cells, which are based on rectifying surface plasmon polaritons as a kind of "nano-scale vacuum tube array" for converting sunlight into electricity, was also carried out. Out of more than 3,500 competing universities and companies the concentrating and tracking solar panel with integrated plasmonic solar cells concept was ranked in the top 10% of innovation and potentially disruptive renewable energy technologies during the 2009-2010 grant cycle at the US Department of Energy (DOE) Advanced Projects Research Agency for Energy (ARPA-E). XE was initially located at the corporate incubator facility at Lawrence Livermore National Laboratories (LLNL).
  • Jet Propulsion Laboratory
    Senior Staff Scientist
    Jet Propulsion Laboratory Oct 1999 - Apr 2005
    Pasadena, Ca, Us
    I was a senior staff scientist leading a DARPA supported early-stage R&D effort in photonic crystal materials with an emphasis on applications in renewable-energy and directed energy technologies. In particular, I worked in a team of theoretical physicists developing the material physics, and electronics technology for exploiting photon-phonon energy conversion and transport processes in photonic crystals for applications in laser and solar energy. Additionally, I built a state-of-the-art high-power fiber laser laboratory at JPL. Finally, I was also involved in several other projects including the Wide Swath Ocean Altimeter, Large Aperture Radar metrology, Time Domain Impulse Radar and sensor arrays, flexible electronics and large-scale inflatable space structures, microwave/millimeter-wave beamed-energy propulsion for micro-satellites, and advising & scientific collaboration with both graduate students at Caltech and post-doctoral researchers at JPL.
  • U.S. Army Research Laboratories And University Of Michigan
    Staff Scientist
    U.S. Army Research Laboratories And University Of Michigan Sep 1995 - Aug 1999
    Arlington, Virginia, Us
    I developed both the analog RF hardware and digital electronics to implement an early-stage adaptive electromagnetics tracking system for digital communications that was based on time-reversal physics and microwave phase conjugation. The system was a laboratory demonstrator and was able to simultaneously track a moving target and digitally communicate between moving platforms without using any phase-shifters and without the need to do any explicit phase measurements. I designed and built the digital FPGA architecture, codecs, phase lock loops, microwave electronics (including double balanced mixers, antennas and phase conjugating electronics), IF electronics and measured overall system performance including antenna performance and bit error rates.
  • U.S. Army Research Laboratories And University Of Michigan
    Staff Scientist
    U.S. Army Research Laboratories And University Of Michigan May 1991 - Sep 1995
    Arlington, Virginia, Us
    I was a staff scientist involved in early-stage technology development. My principle responsibilities included researching active and phased-array antenna technology, including: microstrip antenna arrays, optically-triggered RF pulsed antennas for electronic warfare, superconducting antennas, ferro-electric phase shifters, and phased array control electronics. Additional, efforts that I was involved included: RF tags and transponders, sensor arrays for asset tracking, and the first automobile radars now used in collision avoidance in some luxury automobiles and military unmanned autonomous vehicles.
  • Trw Space And Defense Systems
    Electrical Engineer
    Trw Space And Defense Systems May 1990 - Apr 1991
    Friedrichshafen, Baden-Württemberg, De
    I took part in field tests of high-energy laser weapons by collecting data about aerial targets during experiments conducted at the High Energy Laser Systems Test Facility (HELSTF), at the White Sands Missile Range in New Mexico. The experiments included setting up and monitoring infrared sensor systems in the desert during live-fire tests of the Mid-Infrared Advanced Chemical Laser (MIRACL) directed energy weapon system. MIRACL is a deuterium fluoride chemical laser developed by the US Navy that can produce over a megawatt of output, making it the most powerful continuous wave (CW) laser in the US.

Leo Didomenico Skills

Antenna Measurements Optics Physics Wave Propagation Cad/cam Solar Energy Business Patent Preparation Photonics Holography Start Ups Nanotechnology Instrumentation Sensors Electronics Concentrated Solar Power Differential Geometry Team Management Electronic Circuit Design Innovation Management Fundraising Antennas Sustainable Energy Photonic Crystals Laser Scanning Business Planning Latex Entrepreneurship New Business Development Rhino 3d Solar System Design Mathematical Modeling Machining Patent Searching Electrical Engineering Optoelectronics Colloids Electromagnetics Renewable Energy Design Research Simulations Microwave Engineering Product Development Quantitative Research Computer Aided Design Management Mathematica R&d Patent Writing Patent Licensing

Leo Didomenico Education Details

  • University Of Michigan
    University Of Michigan
    Electrical Engineering
  • Rutgers University
    Rutgers University
    Electrical Engineering
  • Rutgers University
    Rutgers University
    Physics
  • Rutgers University
    Rutgers University
    Electrical Engineering

Frequently Asked Questions about Leo Didomenico

What company does Leo Didomenico work for?

Leo Didomenico works for Phasor Technologies Inc

What is Leo Didomenico's role at the current company?

Leo Didomenico's current role is Chief Executive Officer.

What is Leo Didomenico's email address?

Leo Didomenico's email address is le****@****lar.com

What schools did Leo Didomenico attend?

Leo Didomenico attended University Of Michigan, Rutgers University, Rutgers University, Rutgers University.

What are some of Leo Didomenico's interests?

Leo Didomenico has interest in Physics, Sustainable Energy Technology, Flying Aircraft, Sustainable Economic Systems, Running, Engineering, Body Building.

What skills is Leo Didomenico known for?

Leo Didomenico has skills like Antenna Measurements, Optics, Physics, Wave Propagation, Cad/cam, Solar Energy, Business, Patent Preparation, Photonics, Holography, Start Ups, Nanotechnology.

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