IP Library Granted Patent US 9,805,830
Granted Patent B2
US 9,805,830 · App. 14/389,385 · Granted Oct 31, 2017

Generating neutron

Inventors: Suk Jae Yoo (Daejeon, KR); Seong Bong Kim (Goonsan, KR); Jung-sik Yoon (Daejeon, KR)
Assignee: Korea Basic Science Institute
G21B1/05G21G4/02H05H3/06
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Quick Facts
Patent No.
US 9,805,830
App. No.
14/389,385
Granted
Oct 31, 2017
Kind
B2
Abstract

The present invention provides a neutron generating device for generating a high neutron flux by forming plasma in the vicinity of a target and by accelerating electrons and charged particles in the plasma toward the target. Magnetic field is formed in the vicinity of the target and a microwave generator irradiates microwaves into the space where the magnetic field is generated to thereby generate plasma in the space. The accelerated electrons and charged particles collide with the target to generate neutron flux. Also, to prevent the target surface from being excessively heated, the plasma is generated in a pulsed mode and target voltage is applied in a pulsed mode. To secure a continuous process, the level of target bias voltage for the target is adjusted so that the target re-adsorbs elements when the elements adsorbed on the target are depleted.

Claims (38)

1. A neutron generating device, comprising:

a plasma generating chamber;

a target disposed in the chamber, neutron generating elements being adsorbed onto the target;

a magnet structure disposed around the target generating a magnetic field around the target;

a microwave generator for emitting microwaves into a space where the magnetic field is generated; and

a power supply for applying a bias voltage to the target,

wherein the target has a shape of a cylinder and wherein the magnet structure is formed as coupled cylinders or rings that surround a portion of the target from an outside of the target and produces bridge-type magnetic field lines around the target,

and wherein plasma is generated by the microwaves from the microwave generator and wherein electrons and charged particles in the plasma are accelerated toward the target by the bias voltage applied by the power supply and collide with the neutron generating elements on the target to generate a neutron flux.

2. The neutron generating device of claim 1 , wherein the microwave generator irradiates pulsed microwaves into the plasma generating chamber to generate plasma in a pulsed mode.

3. The neutron generating device of claim 1 , wherein the bias voltage is applied to the target in a pulsed mode.

4. The neutron generating device of claim 2 , wherein the bias voltage is applied to the target in a pulsed mode.

5. The neutron generating device of claim 1 , wherein the magnet structure is formed as coupled cylinders or rings and wherein the target is aligned as a line or plate along a central axis of the magnet structure to produce bridge-type magnetic field lines that surround the target.

6. The neutron generating device of claim 2 , wherein the magnet structure is formed as coupled cylinders or rings and wherein the target is aligned as a line or plate along a central axis of the magnet structure to produce bridge-type magnetic field lines that surround the target.

7. The neutron generating device of claim 5 , wherein the bias voltage is applied to the target in a pulsed mode.

8. The neutron generating device of claim 6 , wherein the bias voltage is applied to the target in a pulsed mode.

9. The neutron generating device of claim 5 , wherein the magnet structure is formed as multiple couples of cylinders or rings and wherein the target is aligned as a line or plate along a central axis of the magnet structure to produce multi-mode bridge-type magnetic field lines that surround the target.

10. The neutron generating device of claim 6 , wherein the magnet structure is formed as multiple couples of cylinders or rings and wherein the target is aligned as a line or plate along a central axis of the magnet structure to produce multi-mode bridge-type magnetic field lines that surround the target.

11. The neutron generating device of claim 10 , wherein the bias voltage is applied to the target in a pulsed mode.

12. The neutron generating device of claim 1 , wherein the target includes an internal space, and gases containing nuclear fusion reactant elements that include at least one of deuterium or tritium are filled in the internal space.

13. The neutron generating device of claim 2 , wherein the target includes an internal space, and gases containing nuclear fusion reactant elements that include at least one of deuterium or tritium are filled in the internal space.

14. A gamma ray generating source, comprising:

a plasma generating chamber;

a target mounted inside the chamber, gamma ray generating elements being adsorbed onto the target;

a magnet structure installed around the target and generating a magnetic field around the target;

a microwave generator that irradiates microwaves into a space in which the magnetic field is generated; and

a power supply that applies a bias voltage to the target,

wherein the target has a shape of a plate and wherein the magnet structure includes an array of multiple magnets mounted on an upper side of the target and produces bridge-type magnetic field lines surrounding the target,

and wherein plasma is generated by microwaves from the microwave generator and wherein electrons and charged particles in the plasma are accelerated toward the target by the bias voltage applied by the power supply and collide with the gamma ray generating elements on the target to generate a gamma ray flux.

15. The gamma ray generating source of claim 14 , wherein the bias voltage to the target is applied in a pulsed mode.

16. A neutron generating source, comprising:

a plasma generating chamber;

a target mounted inside the chamber, neutron generating elements being adsorbed onto the target;

a magnet structure installed around the target and generating a magnetic field around the target;

a microwave generator that irradiates microwaves into a space in which the magnetic field is generated; and

a power supply that applies a bias voltage to the target,

wherein the target has a shape of a cylinder and wherein the magnet structure is formed as coupled cylinders or rings that surround the target from an outside of the target and produces bridge type magnetic field lines around the target,

and wherein plasma is generated by microwaves from the microwave generator and wherein electrons and charged particles in the plasma are accelerated toward the target by the bias voltage applied by the power supply and collide with the neutron generating elements on the target to generate a neutron flux.

17. The neutron generating device of claim 16 , wherein the bias voltage is applied to the target in a pulsed mode.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY POSTAL CODE PREVIOUSLY RECORDED ON REEL 055585 FRAME 0627. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 24, 2021
From: KOREA BASIC SCIENCE INSTITUTE
To: KOREA INSTITUTE OF FUSION ENERGY
Reel/Frame 055695/0192 →
CHANGE OF ADDRESS Recorded Mar 15, 2021
From: KOREA BASIC SCIENCE INSTITUTE
To: KOREA BASIC SCIENCE INSTITUTE
Reel/Frame 055585/0509 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2021
From: KOREA BASIC SCIENCE INSTITUTE
To: KOREA INSTITUTE OF FUSION ENERGY
Reel/Frame 055585/0627 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2014
From: YOO, SUK JAE; KIM, SEONG BONG; YOON, JUNG-SIK
To: KOREA BASIC SCIENCE INSTITUTE
Reel/Frame 033857/0826 →
Priority Claims (1)
KR 10-2012-0033751 · Apr 2, 2012 · national
Continuity (1)
Related Publication 20150063518A1 · Mar 5, 2015