Abstract:
A tank may include: a tank main body having a space and an opening; a lid body covering the opening and a peripheral portion of the opening; a bolt for fixing the tank main body and the lid body in the peripheral portion; a first support portion arranged to surround the opening in a region on a side of the opening with respect to the bolt to support the lid body; a second support portion arranged to surround the opening in a region on the opening side with respect to the first support portion and having a height lower than a height of the first support portion; and a sealing member arranged to surround the opening in the region on the opening side with respect to the first support portion.
Abstract:
A target storage device may include a tank configured to store a target that generates extreme ultraviolet light when being irradiated with laser light, a heater connected with the tank and configured to heat the tank, and a radiation member disposed to cover at least a part of the tank connected with the heater and configured to reflect heat radiation from the tank and the heater toward the tank.
Abstract:
A target supply device may include: a target generator configured to accommodate a liquid target material and having a nozzle with a nozzle hole from which the liquid target material is outputted; and a filter disposed in the target generator and made of glass, the glass reacting with the liquid target material, so that a solid reaction product is generated. The filter may include a first through-hole configured to allow the liquid target material to pass therethrough, and an inner surface of the first through-hole may be coated with a material which is not easy to react with the liquid target material.
Abstract:
An extreme ultraviolet light generation device may include a chamber in which a target is irradiated with laser light and extreme ultraviolet light is generated, and a target supply unit configured to eject a target into the chamber. The target supply unit may be provided with a nozzle member including an ejection face having an ejection port configured to eject the target into the chamber. An angle θ1 defined by the ejection face and the gravity axis may satisfy a condition of “0 degrees
Abstract:
An extreme ultraviolet light generation device may include a chamber in which a target is irradiated with laser light and extreme ultraviolet light is generated, and a target supply unit configured to eject a target into the chamber. The target supply unit may be provided with a nozzle member including an ejection face having an ejection port configured to eject the target into the chamber. An angle θ1 defined by the ejection face and the gravity axis may satisfy a condition of “0 degrees
Abstract:
A vibrator unit may be configured to vibrate a target material in a target channel and include a vibration element configured to vibrate in response to an external electrical signal having a predetermined frequency. A resonance frequency of the vibration element may be different from the predetermined frequency of the electrical signal. A vibrator unit may include a vibration transmission member in contact with the first member including the target channel in interior; and a vibration element that is in contact with the vibration transmission member. A mode-1 natural frequency of the vibration transmission member may be different from a resonance frequency of the vibration element.
Abstract:
A target supply device according to an aspect of the present disclosure may include a target generator having a holding space and a first through-hole that communicates with the holding space, a porous filter having a thermal expansion coefficient that is substantially the same as a thermal expansion coefficient of the target generator, and a holder portion having a thermal expansion coefficient that is substantially the same as the thermal expansion coefficient of the target generator, that is configured to hold the porous filter and that is provided so as to form a seal against an inner surface of the target generator.
Abstract:
A vibrator unit may be configured to apply vibration to a target material supplied to an inside of a target flow path. The vibrator unit may include a vibration transmission member to be brought into contact with a first member including the target flow path therein, and a piezoelectric member to be brought into contact with the vibration transmission member. The piezoelectric member may be configured to vibrate in response to an electric signal from the outside. The vibration dumping rate of the vibration transmission member may be smaller than the vibration dumping rate of the first member.
Abstract:
A target supply device 4 may include a tank 51, formed of a metal, that holds a target material, an insulating member 62 that makes contact with at least part of the periphery of the tank 51, and a heater 58 that is separated from the tank 51 and heats the tank 51 via the insulating member 62.
Abstract:
A target supply device may include a reservoir configured to store a target material, the reservoir having a first channel through which the target material passes, a nozzle plate having a second channel through which the target material passes after passing through the first channel, and a filter having a first surface and a second surface and provided between the reservoir and the nozzle plate such that the first surface and the reservoir are face-sealed and the second surface and the nozzle plate are face-sealed, the filter having a plurality of through-holes through which the target material passes.