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Light-In-Flight Imaging by a Silicon Image Sensor: Toward the Theoretical Highest Frame Rate.

Takeharu Goji Etoh1,2, Tomoo Okinaka3, Yasuhide Takano4

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Summary
This summary is machine-generated.

A new backside-illuminated image sensor captures light in flight at 10 ns intervals. Further development aims for 11.1 ps temporal resolution, enabling faster time-of-flight and lifetime measurements.

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light-in-flighttheoretical temporal resolution limitultra-high-speed image sensor

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Area of Science:

  • High-speed imaging and sensor technology
  • Photonics and optical instrumentation

Background:

  • Capturing dynamic light phenomena requires advanced imaging capabilities.
  • Existing high-speed imaging often relies on complex gating devices or post-processing.

Purpose of the Study:

  • To report the development of a novel backside-illuminated multi-collection-gate image sensor.
  • To demonstrate its capability for high-speed light capture without external gating.
  • To explore its potential for achieving theoretical temporal resolution limits.

Main Methods:

  • Utilized a newly developed backside-illuminated multi-collection-gate image sensor.
  • Captured light in flight at a 10 ns frame interval in a single shot.
  • Conducted theoretical analysis to determine conditions for minimizing temporal resolution.

Main Results:

  • Successfully captured light in flight at 10 ns intervals without high-speed gating.
  • Derived a theoretical temporal resolution limit of 11.1 ps.
  • Simulations predict a future sensor achieving a 50 ps frame interval using existing technology.

Conclusions:

  • The developed image sensor represents a significant advancement in high-speed imaging.
  • Achieving near-theoretical temporal resolution will enable new applications in time-of-flight and lifetime measurements.
  • The sensor's speed, 200x faster than previous versions, promises innovation in fields like TOF-MS, FLIM, and LIDAR.