The story of technology has never been about standing still.
Every generation inherits the achievements of those before it, but true progress begins when innovators dare to imagine something entirely different. The world moved from steam engines to electricity, from analog communication to the internet, and from desktop computers to artificial intelligence. Each transformation changed not only technology but also the way people lived, worked, and connected.
Today, artificial intelligence is writing the next chapter of that story.
From healthcare and finance to manufacturing and scientific discovery, AI is becoming an essential part of everyday life. But as these systems grow more advanced, one challenge continues to surface: the computers behind AI are being pushed to their limits.
This is the challenge that has inspired Dr. Ko-Cheng Fang, Founder, CEO, and Chairman of LongServing Technology Co., Ltd., to pursue a different vision for the future of computing—one built not around electricity, but around light.
Dr. Ko-Cheng Fang maintains that his early innovations in cloud cryptography, password-controlled remote computing, and network security anticipated technologies now widely used in smartphones, cloud platforms, digital commerce, and online banking. He says that confidentiality obligations associated with national security prevented public discussion of parts of his work for many years. Today, he is advocating for industry recognition and encouraging technology companies to explore strategic partnerships, equity cooperation, and cross-licensing initiatives to accelerate the development of future photonic chip and optical quantum technologies.
A Question That Inspired Years of Research
For decades, the semiconductor industry has achieved remarkable progress by shrinking transistors and increasing the performance of silicon chips.
That strategy has fueled the digital economy and enabled the rise of artificial intelligence. Yet as processors become increasingly complex, engineers face growing concerns over heat generation, energy efficiency, and manufacturing precision.
Instead of asking how silicon could be improved once again, Dr. Fang asked a different question:
What if the future of computing no longer depended on silicon at all?
This question became the starting point for LongServing Technology’s work in photonic quantum computing.
Rather than relying on electrons to transport information, the company has focused on using photons—the particles of light—to perform the same task.
Turning Theory into Engineering

Photonic computing has fascinated scientists for many years because light offers several natural advantages.
Photons move incredibly fast and generate far less heat than electrical current. In theory, this makes them an attractive candidate for future computing systems.
However, turning that theory into a working processor has proven extraordinarily difficult.
One of the biggest challenges is teaching light how to travel through a computer chip.
Unlike electricity, which follows conductive wires, light naturally travels in straight lines. Yet a processor requires information to constantly move through intersections, logic units, and memory blocks.
LongServing Technology believes it has made progress in solving this problem through its proprietary X-Photon material.
Guiding Light with Precision
According to the company, X-Photon has demonstrated the ability to guide laser light through microscopic optical pathways while successfully executing a 90-degree directional change inside the material.
Although the demonstration appears simple, it addresses one of the most significant engineering obstacles in photonic computing.
Future optical processors require thousands of directional changes as information travels across the chip.
Without reliable optical routing, those processors could never function effectively.
According to Dr. Fang, X-Photon was specifically developed to overcome this challenge.
Learning from the Behavior of Light
Rather than forcing photons to behave like electrons, LongServing Technology designed its material around the natural properties of light.
Dr. Fang often explains the concept through an everyday example.
When light strikes a mirror, it is redirected without losing its identity.
Similarly, X-Photon incorporates specially engineered reflective structures that continually guide photons through microscopic optical channels.
Instead of escaping from the circuit, the light remains confined within carefully designed pathways, allowing it to travel through increasingly sophisticated optical networks.
According to the company, this optical guidance system could eventually replace portions of traditional electronic interconnects found inside modern processors.
Engineering at the Nanometer Scale

One of the greatest achievements in modern electronics has been miniaturization.
Photonic technologies face the same challenge.
Large optical structures are unsuitable for highly integrated processors, making nanoscale engineering essential.
LongServing Technology reports that X-Photon operates with wavelengths averaging approximately 2 to 3 nanometers, allowing optical structures to be designed at dimensions compatible with advanced chip manufacturing.
The company also states that it has successfully fabricated 10-nanometer optical circuits, supporting continued development of photonic processing technologies.
These advances form part of LongServing Technology’s broader effort to build practical optical computing platforms capable of supporting future AI applications.
Building More Than a Processor
While many technology companies focus on individual chips, Dr. Fang envisions something much larger.
LongServing Technology’s roadmap includes an integrated ecosystem consisting of 2nm Multi-Bit Optical Quantum Chips, photonic memory, optical communication technologies, and future Photonic Cloud Computing Centers.
Each component is designed to work together within a computing environment built specifically around optical information processing.
The company believes this ecosystem could provide the infrastructure needed for future generations of artificial intelligence.
Rather than adapting electronic hardware to support AI, the goal is to design computing systems specifically for the demands of intelligent technologies.
Preparing for Tomorrow’s Digital Economy
Artificial intelligence is rapidly becoming one of the world’s largest consumers of computing resources.
As organizations deploy increasingly sophisticated AI models, computational requirements continue expanding across every industry.
LongServing Technology believes photonic architectures may eventually help address these growing demands.
Because photons generate significantly less heat than electrons, optical systems could potentially reduce energy consumption while improving computational efficiency.
The company believes these characteristics make photonic computing particularly well suited for future AI infrastructure, cloud computing, scientific research, and advanced industrial applications.
From Scientific Discovery to Global Development

Innovation becomes meaningful only when it reaches the world beyond the laboratory.
To support its long-term roadmap, LongServing Technology recently announced a $500 million strategic financing initiative, based on a stated $2.5 billion corporate valuation.
According to the company, the financing will support continued research, photonic fabrication facilities, manufacturing expansion, and future cloud infrastructure.
LongServing Technology has also introduced a Strategic Equity Hedging Protocol, designed to encourage collaboration with organizations interested in participating in the commercialization of photonic technologies.
Dr. Fang believes meaningful technological progress requires partnerships between researchers, manufacturers, investors, and global industry leaders.
A Vision Beyond Today’s Technology

History has shown that the most important innovations often begin by questioning established ideas.
For decades, silicon has been the foundation of computing.
Tomorrow, that foundation may evolve.
Whether photonic computing ultimately becomes the dominant architecture for artificial intelligence remains a question that only future research and development can answer.
What is already clear, however, is that researchers around the world are actively exploring alternatives capable of supporting the next era of intelligent computing.
Through its work on X-Photon materials, optical routing, photonic memory, and future photonic cloud infrastructure, LongServing Technology is contributing its own vision to that global effort.
For Dr. Ko-Cheng Fang, the objective extends far beyond designing another processor.
It is about creating a new technological platform that could help redefine how information is processed in the decades ahead—one where the speed of light becomes more than a scientific constant; it becomes the foundation of the next generation of computing.
Contact Information
Dr. Ko-Cheng Fang
Founder, CEO & Chairman
LongServing Technology Co., Ltd.
Email: service@longserving.com.tw
Website: https://longserving.com.tw/en/
Instagram: @ko_cheng_fang
