IP Library › Granted Patent US 11,187,578
Granted Patent B1
US 11,187,578 · App. 16/933,261 · Granted Nov 30, 2021

Single-photon detection method and apparatus

Inventors: Seok Kim (Daejeon, KR); Eun Ji Kim (Daejeon, KR); Younchang Jeong (Daejeon, KR); Osung Kwon (Daejeon, KR); Changho Hong (Daejeon, KR); Se Wan Ji (Daejeon, KR); Haeng-Seok Ko (Daejeon, KR); Jingak Jang (Daejeon, KR); Daesung Kwon (Daejeon, KR)
Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
G01J1/44G01J2001/442G01J2001/4466
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Quick Facts
Patent No.
US 11,187,578
App. No.
16/933,261
Granted
Nov 30, 2021
Kind
B1
Abstract

A single-photon detection method and apparatus. The single-photon detection method detects a single photon using a single-photon detection apparatus, and includes generating an output signal through a photon detector by receiving a light signal as an input, generating a negative voltage comparison result through a negative voltage comparator by receiving the output signal as an input, and generating a photon detection result based on the negative voltage comparison result.

Claims (34)

1. A single-photon detection apparatus in an optical quantum communication system, comprising:

a photon detector for generating an output signal from an incoming light signal to detect a photon;

a negative voltage comparator for generating a negative voltage comparison result by comparing a negative voltage included in the output signal with a preset negative reference voltage; and

a result generation unit for generating a photon detection result based on the negative voltage comparison result,

wherein when a breakdown current of the photon detector is produced, a photon detection result indicating that a photon has been detected is generated due to a change in the negative voltage of the output signal.

2. The single-photon detection apparatus of claim 1 , further comprising a positive voltage comparator for generating a positive voltage comparison result by comparing a positive voltage included in the output signal with a preset positive reference voltage,

wherein the result generation unit generates the photon detection result based on the negative voltage comparison result and the positive voltage comparison result.

3. The single-photon detection apparatus of claim 2 , wherein:

the negative voltage comparison result is defined as indicating that a photon has been detected when the negative voltage is higher than the negative reference voltage, and

the positive voltage comparison result is defined as indicating that a photon has been detected when the positive voltage is higher than the positive reference voltage.

4. The single-photon detection apparatus of claim 3 , wherein the result generation unit is configured to, when one or more of the negative voltage comparison result and the positive voltage comparison result are defined as indicating that a photon has been detected, generate the photon detection result indicating that the photon has been detected.

5. The single-photon detection apparatus of claim 1 , wherein the photon detector is an Avalanche Photodiode (APD).

6. The single-photon detection apparatus of claim 5 , further comprising a driver for applying a gate signal to the photon detector.

7. The single-photon detection apparatus of claim 6 , wherein the gate signal includes a bias voltage lower than a breakdown voltage of the avalanche photodiode and a pulse voltage to be added to the bias voltage such that the gate signal periodically has a higher voltage than the breakdown voltage only during a period of time in which the pulse voltage is added.

8. A single-photon detection method for detecting a single photon using a single-photon detection apparatus in an optical quantum communication system, the single-photon detection method comprising:

generating an output signal through a photon detector from an incoming light signal to detect a photon;

generating a negative voltage comparison result through a negative voltage comparator by comparing a negative reference voltage, which is preset in the negative voltage comparator, with a negative voltage included in the output signal; and

generating a photon detection result based on the negative voltage comparison result,

wherein when a breakdown current of the photon detector is produced, a photon detection result indicating that a photon has been detected is generated due to a change in the negative voltage of the output signal.

9. The single-photon detection method of claim 8 , further comprising:

generating a positive voltage comparison result by comparing a positive reference voltage, preset in a positive voltage comparator, with a positive voltage included in the output signal through the positive voltage comparator,

wherein generating the photon detection result is configured to generate the photon detection result based on the negative voltage comparison result and the positive voltage comparison result.

10. The single-photon detection method of claim 9 , wherein:

the negative voltage comparison result is defined as indicating that a photon has been detected when the negative voltage is higher than the negative reference voltage, and

the positive voltage comparison result is defined as indicating that a photon has been detected when the positive voltage is higher than the positive reference voltage.

11. The single-photon detection method of claim 10 , wherein generating the photon detection result is configured to, when one or more of the negative voltage comparison result and the positive voltage comparison result are defined as indicating that a photon has been detected, generate the photon detection result indicating that the photon has been detected.

12. The single-photon detection method of claim 8 , wherein the photon detector is an Avalanche Photodiode (APD).

13. The single-photon detection method of claim 12 , further comprising applying a gate signal to the photon detector.

14. The single-photon detection method of claim 13 , wherein the gate signal includes a bias voltage lower than a breakdown voltage of the avalanche photodiode and a pulse voltage to be added to the bias voltage such that the gate signal periodically has a higher voltage than the breakdown voltage only during a period of time in which the pulse voltage is added.

15. A single-photon detection apparatus in an optical quantum communication system, comprising:

one or more processors; and

an execution memory for storing at least one program that is executed by the one or more processors,

wherein the at least one program is configured to generate an output signal through a photon detector from an incoming light signal to detect a photon, generate a negative voltage comparison result through a negative voltage comparator by comparing a negative reference voltage, which is preset in the negative voltage comparator, with a negative voltage included in the output signal, and generate a photon detection result based on the negative voltage comparison result,

wherein when a breakdown current of the photon detector is produced, a photon detection result indicating that a photon has been detected is generated due to a change in the negative voltage of the output signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2020
From: KIM, SEOK; KIM, EUN JI; JEONG, YOUNCHANG; KWON, OSUNG; HONG, CHANGHO; JI, SE WAN; KO, HAENG-SEOK; JANG, JINGAK; KWON, DAESUNG
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 053253/0280 →
Priority Claims (1)
KR 10-2020-0066361 · Jun 2, 2020 · national
Cited By (1)
US 12,463,791