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    • 2. 发明授权
    • Reconfigurable plasma antenna
    • 可重构等离子天线
    • US06369763B1
    • 2002-04-09
    • US09543445
    • 2000-04-05
    • Elwood G. NorrisTed AndersonIgor Alexeff
    • Elwood G. NorrisTed AndersonIgor Alexeff
    • H01Q124
    • H01Q1/366H01Q13/10H05H1/46
    • The present invention is drawn toward a plasma antenna that is preferably reconfigurable, methods of generating plasma antennas, and a method of reconfiguring the radiation pattern of a plasma antenna. The plasma antenna is comprised of a) an enclosed chamber; b) a composition contained within the enclosed chamber capable of forming a plasma; c) at least three energizing points capable of forming electromagnetic contact with the composition; and d) an energy source coupled to the at three energizing points for developing at least one conductive path of plasma within the enclosed chamber. Preferably, a modifying mechanism may be utilized to reconfigure the conductive path.
    • 本发明涉及优选可重构的等离子体天线,等离子体天线的产生方法以及重新配置等离子体天线辐射图的方法。 等离子体天线包括:a)封闭室; b)包含在封闭室内的能够形成等离子体的组合物; c)能够与组合物形成电磁接触的至少三个能量点; 以及d)耦合到三个通电点处的能量源,用于在所述封闭室内形成至少一个等离子体的导电路径。 优选地,可以利用修改机制来重新配置导电路径。
    • 5. 发明授权
    • Reconfigurable electromagnetic waveguide
    • 可重构电磁波导
    • US06624719B1
    • 2003-09-23
    • US09543031
    • 2000-04-05
    • Ted AndersonIgor Alexeff
    • Ted AndersonIgor Alexeff
    • H01P300
    • H05H1/46H01P3/00H01P3/06H01Q1/366H01Q1/38H01Q9/26
    • The present invention is drawn toward plasma electromagnetic waveguides and plasma electromagnetic coaxial waveguides that are reconfigurable, durable, stealth, and flexible. Specifically, the present invention discloses and describes a reconfigurable electromagnetic waveguide comprised of a) an elongated non-conductive enclosure defining a propagation path for directional electromagnetic wave propagation; b) a composition contained within the enclosure capable of forming a plasma, said plasma having a skin depth along a surface within the enclosure such that the electromagnetic waves penetrate the skin depth and are primarily propagated directionally along the path; and c) an energy source to form the plasma. Optionally, an energy modifying medium to reconfigure the waveguide such that electromagnetic waves of various wavelengths may be propagated directionally along the path may be used. Similarly, these waveguides may be modified into coaxial configurations.
    • 本发明涉及等离子电磁波导和等离子体电磁同轴波导,其可重构,耐用,隐形和灵活。 具体地说,本发明公开并描述了一种可重构的电磁波导,其包括:a)限定用于定向电磁波传播的传播路径的细长非导电外壳; b)包含在外壳内的能够形成等离子体的组合物,所述等离子体具有沿壳体内的表面的皮肤深度,使得电磁波穿透皮肤深度并且主要沿着路径方向传播; 和c)形成等离子体的能量源。 可选地,可以使用能够重新配置波导的能量调节介质,使得可以沿着路径定向地传播各种波长的电磁波。 类似地,这些波导可以被修改为同轴配置。
    • 6. 发明申请
    • Plasma device with low thermal noise
    • 具有低热噪声的等离子体装置
    • US20090134803A1
    • 2009-05-28
    • US12324876
    • 2008-11-27
    • Theodore R. AndersonIgor Alexeff
    • Theodore R. AndersonIgor Alexeff
    • H01J7/24H01Q1/26
    • H05H1/46
    • A plasma device having low thermal noise, which results in a high signal-to-noise ratio (SNR) of the plasma device. The plasma device includes devices with a plasma that is responsive to electromagnetic radiation and/or electrical signals. In various configurations, the plasma device has a plasma in which the temperature, resistance, pressure, and/or collision frequency are at a level sufficiently low to produce an acceptable level of noise. In another configuration, the operating frequency of the plasma device is at a level sufficiently high to produce an acceptable level of noise. Decreasing the noise level results in increasing the signal-to-noise ratio and increasing the data rate. The plasma temperature is reduced by operating the plasma device in the afterglow state. The plasma electron temperature is reduced by confining high energy electrons in a potential well and by using an electron emitting filament.
    • 具有低热噪声的等离子体装置,其导致等离子体装置的高信噪比(SNR)。 等离子体装置包括具有响应于电磁辐射和/或电信号的等离子体的装置。 在各种配置中,等离子体装置具有等离子体,其中温度,电阻,压力和/或碰撞频率处于足够低的水平以产生可接受的噪声水平。 在另一种配置中,等离子体装置的工作频率处于足够高的水平以产生可接受的噪声水平。 降低噪声电平导致增加信噪比并增加数据速率。 通过在余辉状态下操作等离子体装置来降低等离子体温度。 通过将高能电子限制在势阱中并通过使用电子发射丝来降低等离子体电子温度。
    • 7. 发明授权
    • Antenna having reconfigurable length
    • 具有可重构长度的天线
    • US06710746B1
    • 2004-03-23
    • US10263355
    • 2002-09-30
    • Theodore AndersonIgor Alexeff
    • Theodore AndersonIgor Alexeff
    • H01Q126
    • H01Q1/26
    • The present invention is drawn to an antenna having a reconfigurable length, and a method of reconfiguring an antenna. The antenna can comprise an enclosed composition capable of forming plasma operable as an antenna; an energy source configured for applying variable energy levels to the composition to thereby form variable plasma configurations; and an enclosure containing the composition. The enclosure can have a proximal end, wherein upon application of a first energy level to the composition, a first plasma length with respect to the proximal end is formed, and upon application of a second energy level to the composition, a second plasma length with respect to the proximal end is formed.
    • 本发明涉及具有可重构长度的天线以及重新配置天线的方法。 天线可以包括能够形成可作为天线操作的等离子体的封闭组合物; 能量源,被配置为向所述组合物施加可变能级,从而形成可变等离子体构造; 和包含该组合物的外壳。 外壳可以具有近端,其中当向组合物施加第一能量水平时,形成相对于近端的第一等离子体长度,并且当向组合物施加第二能量水平时,具有第二等离子体长度, 相对于近端形成。
    • 9. 发明授权
    • Maser
    • 马塞尔
    • US4459511A
    • 1984-07-10
    • US377152
    • 1982-05-11
    • Igor Alexeff
    • Igor Alexeff
    • H01S1/00H01J25/00
    • H01S1/00
    • A method and apparatus for generating microwave radiation includes a cathode, comprising parallel side wall means, a first end wall and a second end wall parallel to the first end wall, which defines a space. An aperture is defined within each of the end walls. An elongated anode extends across the defined space and outwardly through the apertures. Free electrons are generated adjacent to the anode and a positive potential is applied between the cathode and the anode. Electrons are trapped in a surrounding relation with the anode and microwave radiation is generated. In an alternate embodiment, a pair of spaced-apart radial steps in the radius of the anode is used to replace the first and second end walls to form electrostatic mirrors for confining free electrons therebetween.
    • 用于产生微波辐射的方法和装置包括阴极,其包括平行的侧壁装置,第一端壁和平行于第一端壁的第二端壁,其限定空间。 在每个端壁内限定一个孔。 细长的阳极延伸穿过限定的空间并通过孔向外延伸。 在阳极附近产生自由电子,在阴极和阳极之间施加正电位。 电子被捕获在与阳极的周围关系中,并且产生微波辐射。 在替代实施例中,在阳极半径中的一对间隔开的径向台阶用于代替第一和第二端壁以形成用于限制其间的自由电子的静电镜。