Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system
We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser...
Ausführliche Beschreibung
Autor*in: |
Boucher, Yann G. [verfasserIn] |
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E-Artikel |
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Sprache: |
Englisch |
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2019transfer abstract |
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4 |
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Übergeordnetes Werk: |
Enthalten in: Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations - Crowley, Martha ELSEVIER, 2018, an international journal on the physics and chemistry of optical materials and their applications, including devices, Amsterdam [u.a.] |
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Übergeordnetes Werk: |
volume:87 ; year:2019 ; pages:90-93 ; extent:4 |
Links: |
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DOI / URN: |
10.1016/j.optmat.2018.05.032 |
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Katalog-ID: |
ELV045458952 |
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520 | |a We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. | ||
520 | |a We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. | ||
650 | 7 | |a Thin films |2 Elsevier | |
650 | 7 | |a Modal gain |2 Elsevier | |
650 | 7 | |a DFB structure |2 Elsevier | |
650 | 7 | |a Rare-earths |2 Elsevier | |
650 | 7 | |a Glass-ceramics waveguides |2 Elsevier | |
650 | 7 | |a SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> |2 Elsevier | |
700 | 1 | |a Zur, Lidia |4 oth | |
700 | 1 | |a Ferrari, Maurizio |4 oth | |
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10.1016/j.optmat.2018.05.032 doi GBV00000000000490.pica (DE-627)ELV045458952 (ELSEVIER)S0925-3467(18)30303-3 DE-627 ger DE-627 rakwb eng 300 VZ 70.00 bkl 71.00 bkl Boucher, Yann G. verfasserin aut Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system 2019transfer abstract 4 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier Zur, Lidia oth Ferrari, Maurizio oth Enthalten in Elsevier Science Crowley, Martha ELSEVIER Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations 2018 an international journal on the physics and chemistry of optical materials and their applications, including devices Amsterdam [u.a.] (DE-627)ELV00185254X volume:87 year:2019 pages:90-93 extent:4 https://doi.org/10.1016/j.optmat.2018.05.032 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 70.00 Sozialwissenschaften allgemein: Allgemeines VZ 71.00 Soziologie: Allgemeines VZ AR 87 2019 90-93 4 |
spelling |
10.1016/j.optmat.2018.05.032 doi GBV00000000000490.pica (DE-627)ELV045458952 (ELSEVIER)S0925-3467(18)30303-3 DE-627 ger DE-627 rakwb eng 300 VZ 70.00 bkl 71.00 bkl Boucher, Yann G. verfasserin aut Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system 2019transfer abstract 4 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier Zur, Lidia oth Ferrari, Maurizio oth Enthalten in Elsevier Science Crowley, Martha ELSEVIER Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations 2018 an international journal on the physics and chemistry of optical materials and their applications, including devices Amsterdam [u.a.] (DE-627)ELV00185254X volume:87 year:2019 pages:90-93 extent:4 https://doi.org/10.1016/j.optmat.2018.05.032 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 70.00 Sozialwissenschaften allgemein: Allgemeines VZ 71.00 Soziologie: Allgemeines VZ AR 87 2019 90-93 4 |
allfields_unstemmed |
10.1016/j.optmat.2018.05.032 doi GBV00000000000490.pica (DE-627)ELV045458952 (ELSEVIER)S0925-3467(18)30303-3 DE-627 ger DE-627 rakwb eng 300 VZ 70.00 bkl 71.00 bkl Boucher, Yann G. verfasserin aut Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system 2019transfer abstract 4 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier Zur, Lidia oth Ferrari, Maurizio oth Enthalten in Elsevier Science Crowley, Martha ELSEVIER Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations 2018 an international journal on the physics and chemistry of optical materials and their applications, including devices Amsterdam [u.a.] (DE-627)ELV00185254X volume:87 year:2019 pages:90-93 extent:4 https://doi.org/10.1016/j.optmat.2018.05.032 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 70.00 Sozialwissenschaften allgemein: Allgemeines VZ 71.00 Soziologie: Allgemeines VZ AR 87 2019 90-93 4 |
allfieldsGer |
10.1016/j.optmat.2018.05.032 doi GBV00000000000490.pica (DE-627)ELV045458952 (ELSEVIER)S0925-3467(18)30303-3 DE-627 ger DE-627 rakwb eng 300 VZ 70.00 bkl 71.00 bkl Boucher, Yann G. verfasserin aut Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system 2019transfer abstract 4 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier Zur, Lidia oth Ferrari, Maurizio oth Enthalten in Elsevier Science Crowley, Martha ELSEVIER Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations 2018 an international journal on the physics and chemistry of optical materials and their applications, including devices Amsterdam [u.a.] (DE-627)ELV00185254X volume:87 year:2019 pages:90-93 extent:4 https://doi.org/10.1016/j.optmat.2018.05.032 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 70.00 Sozialwissenschaften allgemein: Allgemeines VZ 71.00 Soziologie: Allgemeines VZ AR 87 2019 90-93 4 |
allfieldsSound |
10.1016/j.optmat.2018.05.032 doi GBV00000000000490.pica (DE-627)ELV045458952 (ELSEVIER)S0925-3467(18)30303-3 DE-627 ger DE-627 rakwb eng 300 VZ 70.00 bkl 71.00 bkl Boucher, Yann G. verfasserin aut Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system 2019transfer abstract 4 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier Zur, Lidia oth Ferrari, Maurizio oth Enthalten in Elsevier Science Crowley, Martha ELSEVIER Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations 2018 an international journal on the physics and chemistry of optical materials and their applications, including devices Amsterdam [u.a.] (DE-627)ELV00185254X volume:87 year:2019 pages:90-93 extent:4 https://doi.org/10.1016/j.optmat.2018.05.032 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 70.00 Sozialwissenschaften allgemein: Allgemeines VZ 71.00 Soziologie: Allgemeines VZ AR 87 2019 90-93 4 |
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Enthalten in Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations Amsterdam [u.a.] volume:87 year:2019 pages:90-93 extent:4 |
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Enthalten in Strangers in their hometown: Demographic change, revitalization and community engagement in new Latino destinations Amsterdam [u.a.] volume:87 year:2019 pages:90-93 extent:4 |
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300 VZ 70.00 bkl 71.00 bkl Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> Elsevier |
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ddc 300 bkl 70.00 bkl 71.00 Elsevier Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> |
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ddc 300 bkl 70.00 bkl 71.00 Elsevier Thin films Elsevier Modal gain Elsevier DFB structure Elsevier Rare-earths Elsevier Glass-ceramics waveguides Elsevier SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> |
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Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system |
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modal properties of an erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics sno<ce:inf loc="post">2</ce:inf>-sio<ce:inf loc="post">2</ce:inf> system |
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Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system |
abstract |
We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. |
abstractGer |
We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. |
abstract_unstemmed |
We investigate the modal properties (effective index and modal gain) of an active, Erbium-doped single-mode slab waveguide made of silica tin-dioxide glass-ceramics on Silica. Completed with a photo-inscribed Bragg grating, such a structure is a good candidate for realizing an optically pumped laser emitter. For total Erbium concentration of 9.84 × 10−4 mol/cm3 and a cross-section (for stimulated transitions) of σ ≈ 2 × 10−25 m2 in a discussed structure, the maximum achievable material gain in DFB with Quarter-Wave phase Shift (QWS-DFB) is σ N tot ≈ 23 m−1. Taking into account the confinement factor, the maximum achievable modal gain, in complex amplitude, over the length of 10 mm is at about (α max L) ≈ 0.09. |
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title_short |
Modal properties of an Erbium-doped asymmetric single-mode slab waveguide in the glass-ceramics SnO<ce:inf loc="post">2</ce:inf>-SiO<ce:inf loc="post">2</ce:inf> system |
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