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公开(公告)号:DK3851904T3
公开(公告)日:2023-02-27
申请号:DK20213776
申请日:2020-12-14
Applicant: ASML NETHERLANDS BV
Inventor: SABERT HENDRIK , UEBEL PATRICK SEBASTIAN , PONGERS WILLEM RICHARD
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公开(公告)号:DK3770677T3
公开(公告)日:2024-11-25
申请号:DK20185490
申请日:2020-07-13
Applicant: ASML NETHERLANDS BV
Inventor: UEBEL PATRICK SEBASTIAN , BAUERSCHMIDT SEBASTIAN THOMAS , NI YONGFENG
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公开(公告)号:IL317821A
公开(公告)日:2025-02-01
申请号:IL31782124
申请日:2024-12-18
Applicant: ASML NETHERLANDS BV , BAUERSCHMIDT SEBASTIAN THOMAS , DOMALAPALLY PHANI KUMAR , UEBEL PATRICK SEBASTIAN , G?TZ PETER MAXIMILIAN
Inventor: BAUERSCHMIDT SEBASTIAN THOMAS , DOMALAPALLY PHANI KUMAR , UEBEL PATRICK SEBASTIAN , G?TZ PETER MAXIMILIAN
Abstract: According to one embodiment of the present disclosure there is provided an apparatus for broadband radiation generation, the apparatus comprising a hollow-core fiber at least partially disposed in an enclosure, the enclosure comprising: a body; and a heat transport region configured to transport heat from the hollow-core fiber to the body of the enclosure, the heat transport region comprising a first medium disposed between the hollow-core fiber and the body of the enclosure; wherein, in at least one radial direction from the hollow-core fiber, the heat transport region further comprises a second medium disposed between the first medium and the body of the enclosure over a portion of a length of the enclosure, the second medium comprising a solid and/or a liquid; and wherein a radial distance between the hollow-core fiber and the second medium is less than or equal to 1 mm over the portion.
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公开(公告)号:IL317184A
公开(公告)日:2025-01-01
申请号:IL31718424
申请日:2024-11-21
Applicant: ASML NETHERLANDS BV , MAX PLANCK GESELLSCHAFT ZUR F?RDERUNG DER WSS E V , UEBEL PATRICK SEBASTIAN , LAGLER JOSEF , BAUERSCHMIDT SEBASTIAN THOMAS , G?TZ PETER MAXIMILIAN
Inventor: UEBEL PATRICK SEBASTIAN , LAGLER JOSEF , BAUERSCHMIDT SEBASTIAN THOMAS , G?TZ PETER MAXIMILIAN
IPC: C03B23/207 , C03B37/012 , C03B37/027
Abstract: A method of producing photonic crystal fiber (PCF) preforms, comprising obtaining a plurality of preform capillaries; measuring the wall thickness of each of the plurality of preform capillaries along at least a portion of its circumference at one or more axial positions; selecting a number of preform capillaries from the plurality of preform capillaries at least based on a thickness criterion,; and placing the selected preform capillaries in a glass tube (or jacket tube) to form a PCF preform having at least one ring arrangement of the selected preform capillaries; wherein the selected preform capillaries are oriented such that the portion of each of the selected preform capillaries, within which the measured wall thicknesses vary from the nominal wall thickness by no more than the maximum thickness variation, faces a longitudinal axis of the glass tube, said glass tube being substantially symmetrical about the longitudinal axis.
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