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Waveguide for microwave excitation of plasma in an ion beam guide

机译:在离子束波导中用于微波激发等离子体的波导

摘要

An apparatus and method for providing a low energy, high current ion beam for ion implantation applications are disclosed. The apparatus includes a mass analysis magnet (114) mounted in a passageway (139, 202) along the path (129) of an ion beam, a power source (174) adapted to provide an electric field in the passageway (139, 202), and a magnetic device (170) adapted to provide a multi-cusped magnetic field in the passageway (139, 202), which may include a plurality of magnets (220) mounted along at least a portion of the passageway (139, 202). The power source (174) and the magnets (220) may cooperatively interact to provide an electron cyclotron resonance (ECR) condition along at least a portion of the passageway (139, 202). The multi-cusped magnetic field may be superimposed on the dipole field at a specified field strength in a region of the mass analyzer passageway to interact with an electric field of a known RF or microwave frequency for a given low energy ion beam. The invention further comprises a mass analyzer waveguide (250) adapted to couple the electric field to the beam plasma consistently along the length of the mass analyzer passageway (202) to thereby improve the creation of the ECR condition. The invention thus provides enhancement of beam plasma within a mass analyzer dipole magnetic field for low energy ion beams without the introduction of externally generated plasma. The invention further includes a method (300) of providing ion beam containment in a low energy ion implantation system, as well as an ion implantation system.
机译:公开了一种用于为离子注入应用提供低能量,高电流离子束的设备和方法。该设备包括沿着离子束的路径(129)安装在通道(139、202)中的质量分析磁体(114),适于在通道(139、202)中提供电场的电源(174)。以及适于在通道(139、202)中提供多点磁场的磁性装置(170),该装置可包括沿通道(139、202)的至少一部分安装的多个磁体(220)。 。电源(174)和磁体(220)可以协作地相互作用,以沿着通道(139、202)的至少一部分提供电子回旋共振(ECR)条件。可以在质量分析器通道的区域中以指定的场强将多峰磁场叠加在偶极场上,以与给定的低能量离子束的已知RF或微波频率的电场相互作用。本发明进一步包括质量分析器波导(250),其适于沿着质量分析器通道(202)的长度一致地将电场耦合到束等离子体,从而改善ECR条件的产生。因此,本发明提供了针对低能离子束的质量分析器偶极子磁场内的束等离子体的增强,而无需引入外部产生的等离子体。本发明进一步包括在低能离子注入系统中提供离子束容纳的方法(300),以及离子注入系统。

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