Level 1 — Absolute Beginner
Scientists in Seoul made a new computer chip. It can slow down light.
Light normally moves very, very fast. It is hard to slow it down or hold it in place.
The new chip can change how fast light moves. Scientists can control it whenever they want.
This could help build faster computers that use light instead of electricity.
- chip
- a tiny piece of material used to build electronic devices
- light
- the natural energy that lets us see things
- fast
- moving very quickly
- slow
- not fast; moving at a low speed
- control
- to have power over how something works
- computer
- a machine that stores and processes information
- electricity
- a form of energy used to power machines and lights
- build
- to make or construct something
Level 2 — Elementary
A team of scientists in South Korea has built a programmable chip that can slow down light whenever they want, giving engineers much more control over how light signals move through a circuit.
The research was done by professors at Seoul National University and the University of Seoul, and it was published in the journal Advanced Science.
Light normally travels at a fixed, extremely fast speed, so it is hard to delay it or hold it in place for even a short time. This has been one of the biggest problems standing in the way of computers that use light instead of electricity.
The new chip can change the delay and shape of light signals on demand. This could provide the kind of delays and storage that light-based computers need, making them more useful for things like data centers and communication networks.
- programmable
- able to be controlled or set up using instructions
- engineer
- a person who designs and builds machines, structures, or systems
- circuit
- a path that electricity or light signals travel through in a device
- fixed
- set and not able to be changed
- delay
- a pause or wait before something happens
- on demand
- whenever it is needed or requested
- storage
- a place or way of keeping something for later use
- network
- a system of connected parts that work together to share information
Level 3 — Intermediate
A joint research team led by professors at Seoul National University's Department of Electrical and Computer Engineering, in collaboration with a professor at the University of Seoul, has developed a programmable photonic integrated circuit capable of slowing light on demand, a result published in the journal Advanced Science.
Because light travels at a fixed, extraordinarily high speed, it is inherently difficult to delay optical signals or briefly hold them in place, a limitation that has long posed a fundamental obstacle to making light-based computing practical for everyday use.
The team's chip allows researchers to modify both the delay and the shape of optical signals in real time, addressing functions that electronic circuits handle routinely through buffering and synchronization but that photonic systems have struggled to replicate.
By providing these delay, synchronization, and buffering capabilities on a single programmable chip, the technology could simplify components currently required for optical communications and future data centers, potentially reducing energy consumption, cost, and complexity in the servers that power artificial intelligence systems.
- photonic
- relating to the technology of generating and controlling particles of light
- integrated circuit
- a small chip containing many electronic or optical components built together
- inherently
- in a way that is a basic or permanent feature of something
- obstacle
- something that blocks progress or makes it difficult to achieve a goal
- optical
- relating to light or the way it is used in devices
- synchronization
- the coordination of events so they happen at the same time or in the right order
- replicate
- to reproduce or copy something exactly
- consumption
- the amount of something, such as energy, that is used up
Level 4 — Advanced
A joint research team led by professors within Seoul National University's Department of Electrical and Computer Engineering, in collaboration with a professor at the University of Seoul, has developed a programmable photonic integrated circuit capable of modulating light's propagation speed on demand, a result published in the journal Advanced Science.
Because light propagates at a fixed, extraordinarily high velocity, it is inherently resistant to delay or temporary confinement, a constraint that has long constituted a fundamental impediment to rendering light-based computing viable for widespread practical deployment.
The team's chip permits researchers to reconfigure both the delay and the waveform of optical signals in real time, addressing functions that electronic circuits perform routinely through buffering and synchronization but that photonic systems have historically struggled to replicate given light's uncooperative physical properties.
By consolidating delay, synchronization, and buffering capabilities onto a single programmable substrate, the technology could streamline components presently required for optical communications and future data centers, potentially curtailing energy consumption, cost, and architectural complexity within the servers underpinning artificial intelligence infrastructure.
- modulate
- to adjust or vary something in a controlled way
- propagation
- the movement or spreading of something, such as a wave, through space
- confinement
- the state of being kept within limits or a restricted space
- impediment
- something that hinders or obstructs progress
- reconfigure
- to change the arrangement or setup of something
- waveform
- the shape and form of a signal as it changes over time
- consolidate
- to combine several things into a single, more effective whole
- substrate
- an underlying layer or base material on which something is built