Method and apparatus for generating high-power terahertz wave
09568804 ยท 2017-02-14
Assignee
Inventors
Cpc classification
International classification
Abstract
A method and apparatus for generating terahertz waves using laser plasma are disclosed herein. The method of generating high-power terahertz waves includes generating plasma by focusing a laser beam on a gas within a vacuum chamber, radiating laser beams into the magnetized plasma from opposite directions so that the laser beams collide with each other at a preset location, and generating terahertz waves of a predetermined frequency through the oscillation of the plasma generated by the collision of the laser beams.
Claims
1. A method of generating high-power terahertz waves, comprising: generating plasma by focusing a laser beam on a gas within a vacuum chamber; magnetizing the generated plasma by a magnetic field generator; radiating laser beams into the magnetized plasma from opposite directions so that the laser beams collide with each other at a preset location; and generating terahertz waves of a predetermined frequency through oscillation of the plasma generated by the collision of the laser beams.
2. The method of claim 1, wherein the preset location is a periphery of the plasma generated within the vacuum chamber.
3. The method of claim 1, wherein the laser beams radiated into the magnetized plasma comprises two laser beams that have a preset or lower level of power and are controlled such that they are directed toward a periphery of the plasma from opposite directions and thus collide with each other.
4. The method of claim 3, wherein, when the laser beams having the preset or lower level of power collide with each other in the magnetized plasma, a critical or higher level of plasma waves are formed, and a current in the plasma waves generates terahertz waves while oscillating at a plasma frequency.
5. The method of claim 4, wherein the terahertz waves are generated through formation of the current, which is stationary and oscillates at the plasma frequency, by the formed plasma, as given by the following equation:
6. The method of claim 4, wherein the magnitude of the electric field inside the plasma is expressed by the following equation:
7. An apparatus for generating high-power terahertz waves, comprising: a vacuum chamber; a gas regulator configured to supply a gas to the vacuum chamber; a laser generator configured to generate laser beams having a preset level of energy and a preset or lower level of power, and to radiate two laser beams toward a periphery of plasma within the vacuum chamber from opposite directions so that the two laser beams collide with each other; a plasma generator configured to generate plasma in response to a laser beam radiated into the vacuum chamber and focused on the gas; and a magnetic field generator configured to magnetize the plasma generated by the plasma generator, and to generate terahertz waves of a predetermined frequency using oscillation of the plasma generated through the collision of the opposite laser beams by the laser generator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects, features and advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
(2)
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DETAILED DESCRIPTION
(7) Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Although specific details, such as specific components, are described in the following description, it is apparent to those skilled in the art that they are provided merely to help the general understanding of the present invention and various modifications and variations may be made to them without departing from the spirit and scope of the present invention.
(8) The present invention relates to the generation of terahertz waves using laser plasma. More specifically, the present invention is intended to provide a technology, in which low-power laser beams collide with each other at the periphery of magnetized plasma and then terahertz (THz) waves are generated by a current that is formed in the fine plasma waves formed by the collision and also oscillates at a plasma frequency, thereby generating MW/cm.sup.2-level terahertz waves using a laser having a power ten times lower than that of a conventional high-power laser.
(9) A method of generating high-power terahertz waves according to one embodiment of the present invention will be described below in detail with reference to
(10)
(11) Referring to
(12) In this case, the vacuum chamber provides a space for receiving a gas injected thereinto and exciting the gas into plasma, thereby providing a space for generating plasma.
(13) In operation 112, plasma is generated in response to the focusing of the laser beam.
(14) The reactant gas is activated and transformed into the plasma by the focused laser beams. When a laser generator radiates a high-power laser beam onto a beam focusing unit, the beam focusing unit reflects and focuses the corresponding laser beam at a predetermined location within the vacuum chamber, and a gas present at the predetermined location within the vacuum chamber and having spatially different pressures is ionized by the focused laser beam, thereby generating plasma.
(15) In operation 116, the generated plasma is magnetized by a magnetic field generator.
(16) In operation 118, laser beams are oppositely radiated into the magnetized plasma to collide with each other at a preset location, and in operation 120, terahertz waves of a predetermined frequency are generated.
(17) In this case, when laser beams with a predetermined or lower power collide with each other in the magnetized plasma, a critical or higher level of plasma waves are formed, and a current formed in the plasma waves generates terahertz waves while oscillating at a plasma frequency.
(18) More specifically, the laser beams which are to be incident into the magnetized plasma are generated by the laser generator to have a preset level of energy and a preset or lower level of power. In the present invention, two laser beams are controlled such that they are directed toward a preset location, that is, the periphery of the plasma, from opposite directions, and thus collide with each other in the periphery of the plasma. This is the same as illustrated in
(19)
where is the length of laser pulses/2, k is the number of laser waves, .sub.0 is the normalized vector potential of the laser beams, is laser beam duration/2, .sub.p is the plasma frequency, .sub.c is eB/m, and E.sub.THz is the magnitude of the terahertz electric field.
(20) In addition, the magnitude of the electric field inside the plasma is expressed by Equation 2 below:
(21)
where J.sub.0 is a current density deduced from Equation 1.
(22)
(23) As illustrated in
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(25) As illustrated in
(26) The method of generating high-power terahertz waves according to the present embodiment has been described above.
(27) An apparatus for generating high-power terahertz waves according to one embodiment of the present invention is described below with reference to
(28)
(29) The vacuum chamber 512 includes a plasma generator 514, and provides a space for receiving a gas injected thereinto and then exciting the gas into plasma, thereby providing a space for generating plasma.
(30) The gas regulator 510 is mounted onto the vacuum chamber 512, and supplies gas into the vacuum chamber 512.
(31) The laser generator 518 generates laser beams having a preset level of energy and a preset or lower level of power and radiates two laser beams from opposite directions so that the two laser beams collide with each other at the periphery of plasma within the vacuum chamber 512.
(32) The plasma generator 514 generates plasma in response to the laser beams radiated into the vacuum chamber 512 and focused on the gas.
(33) The plasma generator 514 generates terahertz waves of a predetermined frequency using the oscillation of plasma generated through the collision of the opposite laser beams by the laser generator 518.
(34) In other words, the laser beams which are to be input to the magnetized plasma are generated by the laser generator 518 to have a preset level of energy and a preset or lower level of power. In the present invention, two laser beams are controlled such that they are directed toward a preset location, that is, the periphery of the plasma, from opposite directions, and thus collide with each other in the periphery of the plasma. In this case, fine plasma waves that are about ten times stronger than those in the case of a single laser beam are formed at the collision point of the laser beams, a current that is stationary but oscillates at a plasma frequency is formed by the plasma waves formed at the collision point of the laser beams, and terahertz waves are generated by the current.
(35) As described above, the present invention provides the method and apparatus for generating high-power terahertz waves, which are capable of generating MW/cm.sup.2-level terahertz waves using a laser having a power ten times lower than that of a conventional high-power laser.
(36) The method and apparatus for generating high-power terahertz waves according to the present invention may be operated as described above. Although the specific embodiments of the present invention have been described for illustrative purposes, various modifications and variations can be made without departing from the scope and spirit of the present invention. Accordingly, the scope of the present invention should not be determined by the above-described embodiments but by the following claims and equivalents thereto.