KR102600432B1 - 홀로그램 초해상도를 위한 인코딩된 광 에너지 가이딩 요소 - Google Patents
홀로그램 초해상도를 위한 인코딩된 광 에너지 가이딩 요소 Download PDFInfo
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- KR102600432B1 KR102600432B1 KR1020227033871A KR20227033871A KR102600432B1 KR 102600432 B1 KR102600432 B1 KR 102600432B1 KR 1020227033871 A KR1020227033871 A KR 1020227033871A KR 20227033871 A KR20227033871 A KR 20227033871A KR 102600432 B1 KR102600432 B1 KR 102600432B1
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- light energy
- energy
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- Devices For Indicating Variable Information By Combining Individual Elements (AREA)
- Diffracting Gratings Or Hologram Optical Elements (AREA)
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Abstract
Description
도 2는 기계적 엔벨로프(envelope)를 갖는 능동 소자 영역을 갖는 광 에너지 시스템을 나타내는 개략도이다.
도 3은 광 에너지 릴레이 시스템을 나타내는 개략도이다.
도 4는 베이스 구조체에 함께 접착되어 고정된 광 에너지 릴레이 요소들의 실시예를 나타내는 개략도이다.
도 5a는 멀티 코어 광섬유를 통해 중계된 이미지의 일례를 나타내는 개략도이다.
도 5b는 횡방향 앤더슨 편재 원리의 특성들을 나타내는 광학 릴레이를 통해 중계된 이미지의 일례를 나타내는 개략도이다.
도 6은 광 에너지 표면으로부터 관찰자(viewer)로 전파된 광선을 나타내는 개략도이다.
도 7은 광 에너지 가이딩 요소 및 복수의 광 에너지 위치들에 의해 지시되는 바와 같은 시야를 갖는 실시예를 나타낸다.
도 8은 120도의 시야를 달성하도록 설계된 유효 초점 길이를 갖는 광 에너지 가이딩 요소를 갖는 시스템에 대한 도전적인 특성들을 설명하는 실시예를 나타낸다.
도 9는 광 에너지 장치들과 광 에너지 결합 요소 상에 형성된 광 에너지 위치 표면 사이에서 광 에너지를 중계하도록 구성된 광 에너지 결합 요소의 실시예의 도면이다.
도 10은 광 에너지 장치의 일 실시예를 나타낸다.
도 11은 광 에너지 장치의 일 실시예를 나타낸다.
도 12a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 13a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 14a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 15a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 16a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 17a-b는 제 1 및 제 2 시점에서의 광 에너지 지향 장치의 일 실시예의 도면이다.
도 18은 예시적인 능동 광 에너지 인코딩 요소의 상면도이다.
도 19a는 광 에너지 결합기 시스템의 측면도이다.
도 19b는 오버헤드 도면에서의 광 에너지 결합기 표면의 일부를 나타낸다.
도 19c는 광 에너지 장치들의 대안적인 실시예의 평면도를 나타낸다.
도 20은 애너모픽(anamorphic) 광 에너지 릴레이 요소들을 활용함으로써 동일한 유효 픽셀 밀도 및 픽셀 종횡비의 변화를 달성할 수 있는 방법을 나타내는 추가적인 실시예를 예시한다.
Claims (36)
- 광 에너지 장치로서,
제1 면 및 제2 면을 포함하는 에너지 가이딩 요소들의 어레이로서, 상기 어레이의 상기 제1 면 상의 복수의 광 에너지 위치들을 통해 연장되는 복수의 광 에너지 전파 경로들을 따라 광 에너지를 지향시키도록 구성되는, 상기 에너지 가이딩 요소들의 어레이;
상기 복수의 광 에너지 전파 경로들을 따라 광 에너지의 전파를 제한하도록 동작 가능한 광 에너지 인코딩 요소; 및
복수의 광 에너지 장치들과 광 에너지 결합 요소 상에 형성된 광 에너지 위치 표면 사이에서 광 에너지를 중계하도록 구성되는 광 에너지 결합 요소를 포함하며,
상기 복수의 광 에너지 위치들은 상기 광 에너지 결합 요소의 상기 광 에너지 위치 표면 상에 위치되며, 또한 상이한 광 에너지 장치들을 통해 전파되는 광 에너지가 상기 광 에너지 위치 표면 상의 인터레이스된 광 에너지 위치 또는 위빙된 광 에너지 위치를 통해 중계되고,
상기 에너지 가이딩 요소들의 어레이의 제1 및 제2 에너지 가이딩 요소들을 통한 금지되지 않은 광 에너지 전파 경로들은 광 에너지 위치들의 제1 및 제2 영역들을 정의하고, 상기 제1 및 제2 영역들은 중첩 및 오프셋되며; 또한 상기 광 에너지 인코딩 요소는 상기 제1 및 제2 영역들 내의 각각의 광 에너지 위치를 통한 광 에너지 전파를 하나의 금지되지 않은 광 에너지 전파 경로로 실질적으로 제한하며;
제1 및 제2 에너지 가이딩 요소들을 통한 금지되지 않은 광 에너지 전파 경로는 4D 플렌옵틱 함수(4D plenoptic function)에 의해 정의되는 체적 광 에너지 필드의 적어도 일부를 형성하는 광 에너지 장치. - 제1항에 있어서,
상기 복수의 광 에너지 위치들을 통과하는 광 에너지는 2개의 상이한 광 에너지 상태들로 인코딩되며;
상기 광 에너지 인코딩 요소는 광 에너지 요소를 포함하고, 상기 광 에너지 요소는 복수의 제1 영역들 및 복수의 제2 영역들을 포함하고, 각각의 제1 영역은 제1 광 에너지 상태의 광 에너지가 실질적으로 금지됨 없이 통과할 수 있게 하고, 제2 광 에너지 상태에서의 광 에너지 전파를 실질적으로 금지하도록 구성되며, 각각의 제2 영역은 상기 제2 광 에너지 상태의 광 에너지가 실질적으로 금지됨 없이 통과할 수 있게 하고, 상기 제1 광 에너지 상태에서의 광 에너지 전파를 실질적으로 금지하도록 구성되는 광 에너지 장치. - 제2항에 있어서,
상기 상이한 광 에너지 상태들은 제1 및 제2 광 에너지 인코딩 상태들을 포함하고, 상기 광 에너지 인코딩 요소는 광 에너지 편광 요소를 포함하는 광 에너지 장치. - 제3항에 있어서,
상기 광 에너지 인코딩 요소는,
a) 선형 편광자;
b) 원형 편광자; 및
c) 광 에너지 편광 변조 장치로 구성된 그룹 중에서 선택되는 편광 요소를 포함하는 광 에너지 장치. - 제3항에 있어서,
상기 광 에너지 요소의 상기 복수의 제1 영역들은 각각 제1 광축을 갖는 광 에너지 인코딩 요소를 포함하고, 상기 광 에너지 요소의 상기 복수의 제2 영역들은 각각 제2 광축을 갖는 광 에너지 인코딩 요소를 포함하는 광 에너지 장치. - 제3항에 있어서,
상기 제1 및 제2 영역들 내의 상기 광 에너지 위치들은 광 에너지 인코딩 상태들에 의해 인터레이스되거나 위빙되는 광 에너지 장치. - 제3항에 있어서,
상기 제1 및 제2 영역들 내의 상기 광 에너지 위치들은 광 에너지 인코딩 상태들에 의해 그룹화되어 인터레이스되거나 위빙되는 광 에너지 장치. - 제2항에 있어서,
상기 광 에너지 인코딩 요소의 상기 복수의 제1 영역들 및 상기 복수의 제2 영역들이 협력하여 각각의 에너지 가이딩 요소에 대한 개구(aperture)를 형성하는 광 에너지 장치. - 제2항에 있어서,
상기 광 에너지 인코딩 요소의 상기 복수의 제1 영역들 및 상기 복수의 제2 영역들이 협력하여 각각의 에너지 가이딩 요소에 대한 복수의 개구들을 형성하는 광 에너지 장치. - 삭제
- 제1항에 있어서,
상기 광 에너지 결합 요소는 횡방향 앤더슨 편재(Anderson localization)를 나타내는 요소를 포함하는 광 에너지 장치. - 제1항에 있어서,
광 에너지 인코딩 상태들은 상기 광 에너지 결합 요소를 통해 유지되며, 상기 인터레이스된 광 에너지 위치들은 교번하여 인코딩되는 광 에너지 상태들을 유지하는 광 에너지 장치. - 제12항에 있어서,
상기 교번하는 광 에너지 상태들은 직교 편광 상태들인 광 에너지 장치. - 제1항에 있어서,
상기 광 에너지 인코딩 요소는 상기 에너지 가이딩 요소들의 어레이의 상기 제2 면 상에 위치되는 광 에너지 장치. - 제1항에 있어서,
상기 광 에너지 인코딩 요소는 상기 복수의 광 에너지 위치들과 상기 에너지 가이딩 요소들의 어레이 사이의 상기 제1 면 상에 위치되는 광 에너지 장치. - 광 에너지 장치로서,
제1 면 및 제2 면을 포함하는 에너지 가이딩 요소들의 어레이로서, 상기 어레이의 상기 제1 면 상의 복수의 광 에너지 위치들을 통해 연장되는 복수의 광 에너지 전파 경로들을 따라 광 에너지를 지향시키도록 구성되는, 상기 에너지 가이딩 요소들의 어레이;
상기 복수의 광 에너지 전파 경로들을 따라 광 에너지의 전파를 제한하도록 동작 가능한 광 에너지 인코딩 요소; 및
복수의 광 에너지 장치들과 광 에너지 결합 요소 상에 형성된 광 에너지 위치 표면 사이에서 광 에너지를 중계하도록 구성되는 광 에너지 결합 요소를 포함하며,
상기 복수의 광 에너지 위치들은 상기 광 에너지 결합 요소의 상기 광 에너지 위치 표면 상에 위치되며, 또한 상이한 광 에너지 장치들을 통해 전파되는 광 에너지가 상기 광 에너지 위치 표면 상의 인터레이스된 광 에너지 위치 또는 위빙된 광 에너지 위치를 통해 중계되고,
상기 에너지 가이딩 요소들의 어레이의 제1 및 제2 에너지 가이딩 요소들을 통한 금지되지 않은 광 에너지 전파 경로들은 광 에너지 위치들의 제1 및 제2 영역들을 정의하고, 상기 제1 및 제2 영역들은 중첩 및 오프셋되며; 또한 제1 시점에서, 상기 광 에너지 인코딩 요소는 상기 제1 영역 내의 광 에너지 위치들을 통한 광 에너지 전파 경로들을 실질적으로 금지하고, 상기 광 에너지 인코딩 요소는 상기 제2 영역 내의 광 에너지 위치들을 통한 실질적으로 금지되지 않은 광 에너지 전파 경로들을 허용하며;
제2 시점에서, 상기 광 에너지 인코딩 요소는 상기 제2 영역 내의 광 에너지 위치들을 통한 광 에너지 전파 경로들을 실질적으로 금지하고, 상기 광 에너지 인코딩 요소는 상기 제1 영역 내의 광 에너지 위치들을 통한 실질적으로 금지되지 않은 광 에너지 전파 경로들을 허용하며,
제1 및 제2 에너지 가이딩 요소들을 통한 시간적으로 응집된 금지되지 않은 광 에너지 전파 경로들이 4D 플렌옵틱 함수에 의해 정의되는 체적 광 에너지 필드의 적어도 일부를 형성하는 광 에너지 장치. - 제16항에 있어서,
상기 광 에너지 인코딩 요소는 적어도 제1 상태와 제2 상태 사이에서 스위칭하도록 구성되는 능동 광 에너지 인코딩 시스템을 포함하며, 상기 제1 상태로 구동될 경우, 상기 능동 광 에너지 인코딩 시스템은 제1 세트의 개구들을 형성하도록 구성되고, 상기 제2 상태로 구동될 경우, 상기 능동 광 에너지 인코딩 시스템은 제2 세트의 개구들을 형성하도록 구성되는 광 에너지 장치. - 제17항에 있어서,
상기 제1 세트 및 제2 세트의 개구들은 상기 능동 광 에너지 인코딩 시스템의 광 에너지 인코딩 요소들에 의해 형성되는 광 에너지 장치. - 제18항에 있어서,
상기 광 에너지 인코딩 요소들은 능동 개구 배리어들을 포함하는 광 에너지 장치. - 제19항에 있어서,
상기 능동 개구 배리어들은 셔터(shutter)들을 포함하는 광 에너지 장치. - 제17 항에 있어서,
상기 제1 세트 및 제2 세트의 개구들은 상기 능동 광 에너지 인코딩 시스템의 하나 이상의 수동 광 에너지 인코딩 요소와 협력하여 상기 능동 광 에너지 인코딩 시스템의 하나 이상의 광 에너지 인코딩 요소들을 제어함으로써 형성되는 광 에너지 장치. - 제21항에 있어서,
상기 하나 이상의 능동 광 에너지 인코딩 요소들은,
a) 광 에너지 편광 스위치;
b) 광 에너지 대역통과 스위치; 및
c) 광 에너지 변조 장치로 구성된 그룹 중에서 선택되는 광 에너지 장치. - 제21항에 있어서,
상기 하나 이상의 수동 광 에너지 인코딩 요소들은,
a) 광 에너지 편광 필터;
b) 광 에너지 대역통과 스위치; 및
c) 광 에너지 가이딩 요소으로 구성된 그룹 중에서 선택되는 광 에너지 장치. - 제21항에 있어서,
상기 하나 이상의 능동 광 에너지 요소들은 상이한 광 에너지 상태들로 광 에너지를 인코딩하고, 상기 하나 이상의 수동 광 에너지 요소들은 상기 광 에너지 상태들에 기초하여 광 에너지를 인코딩하는 광 에너지 장치. - 제24항에 있어서,
상기 하나 이상의 능동 광 에너지 요소들은 인접한 광 에너지 위치들의 그룹에서의 광 에너지를 상이한 광 에너지 상태들로 일시적으로 인코딩하는 광 에너지 장치. - 제24항에 있어서,
상기 하나 이상의 능동 광 에너지 요소들은 인터레이스되거나 또는 위빙된 광 에너지 위치들에서의 광 에너지를 상이한 광 에너지 상태들로 일시적으로 인코딩하는 광 에너지 장치. - 제21항에 있어서,
상기 하나 이상의 수동 광 에너지 요소들은 광 에너지를 상이한 광 에너지 상태들로 인코딩하고, 상기 하나 이상의 능동 광 에너지 인코딩 요소들은 상기 광 에너지 상태들에 기초하여 광 에너지를 선택적으로 지향시키는 광 에너지 장치. - 제27항에 있어서,
상기 하나 이상의 수동 광 에너지 요소들은 인터레이스되거나 또는 위빙된 광 에너지 위치들에서 상이한 광 에너지 상태들로 광 에너지를 인코딩하는 광 에너지 장치. - 제17항에 있어서,
상기 제1 세트 및 제2 세트의 개구들은 복수의 개구들이 각각의 에너지 가이딩 요소에 대해 형성되도록 형성되며, 상기 광 에너지 인코딩 요소는 각각의 에너지 가이딩 요소에 대한 상기 복수의 개구들을 통한 상기 복수의 광 에너지 전파 경로들을 따르는 광 에너지의 전파를 제한하도록 구성되는 스플릿 개구 광 에너지 인코딩 요소를 더 포함하는 광 에너지 장치. - 제17 항에 있어서,
상기 제1 세트 및 제2 세트의 개구들은 복수의 개구들이 각각의 에너지 가이딩 요소에 대해 형성되도록 형성되며, 각각의 에너지 가이딩 요소에 대한 상기 복수의 개구들을 통해 광 에너지가 일시적으로 지향되는 광 에너지 장치. - 제17항에 있어서,
상기 능동 광 에너지 인코딩 시스템은 하나 이상의 추가 상태들로 스위칭하도록 구성되며, 하나 이상의 추가 상태들로 구동될 경우, 상기 능동 광 에너지 인코딩 시스템은 하나 이상의 추가 세트들의 개구들을 형성하도록 구성되는 광 에너지 장치. - 삭제
- 삭제
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- 2024-07-10 US US18/768,681 patent/US20250012967A1/en not_active Abandoned
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Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20020118452A1 (en) * | 2001-02-23 | 2002-08-29 | Naosato Taniguchi | Method and apparatus for stereoscopic image display |
| JP2008052010A (ja) * | 2006-08-24 | 2008-03-06 | Noriji Ooishi | 立体像表示装置と撮影装置 |
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