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Chun Ning "Jeanie" Lau is an American physicist who is a Professor of Quantum Materials at Ohio State University. Her research considers materials for quantum technologies, including Van der Waals materials and superconductors. She was elected a Fellow of the American Physical Society in 2017.

Early life and education[edit]

Lau studied physics at the University of Chicago. She moved to Harvard University for graduate research. After completing her doctorate, Lau joined Hewlett Packard Labs, where she worked as a research associate.[citation needed]

Research and career[edit]

Lau joined the University of California, Riverside as a professor in 2004.[1] Whilst at Riverside, she accidentally realized that when stacking three layers of graphene, depending on how the layers were stacked, the structure would behave either as a conductor or an insulator.[2] She made use of Raman spectroscopy to understand the precise stacking orders, and predicted that enhanced electronic interactions between layers with specific geometries were responsible for the formation of a band gap.[2]

Lai moved to Ohio State University as a professor in 2017. Shestudies how quantum confinement impacts the electronic properties and works on topological superconductors and the fabrication of 2D materials with Moiré patterns.[3]

Awards and honors[edit]

Selected publications[edit]

  • Alexander A Balandin; Suchismita Ghosh; Wenzhong Bao; Irene Calizo; Desalegne Teweldebrhan; Feng Miao; Chun Ning Lau (March 2008). "Superior thermal conductivity of single-layer graphene". Nano Letters. 8 (3): 902–7. doi:10.1021/NL0731872. ISSN 1530-6984. PMID 18284217. Wikidata Q28269187.
  • S. Ghosh; I. Calizo; D. Teweldebrhan; et al. (14 April 2008). "Extremely high thermal conductivity of graphene: Prospects for thermal management applications in nanoelectronic circuits". Applied Physics Letters. 92 (15): 151911. doi:10.1063/1.2907977. ISSN 0003-6951. Wikidata Q63549462.
  • Chun Ning Lau; Marc W. Bockrath; Kin Fai Mak; Fan Zhang (2 February 2022). "Reproducibility in the fabrication and physics of moiré materials". Nature. 602 (7895): 41–50. Bibcode:2022Natur.602...41L. doi:10.1038/S41586-021-04173-Z. ISSN 1476-4687. Wikidata Q115777943.

References[edit]

  1. ^ "Chun Ning (Jeanie) Lau". University of California Research. Retrieved 2023-02-13.
  2. ^ a b "How graphene's electrical properties can be tuned". ScienceDaily. Retrieved 2023-02-13.
  3. ^ Interview With Dr. Jeanie Lau, retrieved 2023-02-13
  4. ^ "UC Riverside physicist receives Presidential Early Career Award". 2009-07-08. doi:10.1063/PT.4.1295. {{cite journal}}: Cite journal requires |journal= (help)
  5. ^ a b "UC Riverside graphene specialist Jeanie Lau receives national honor at White House". EurekAlert!. Retrieved 2023-02-13.
  6. ^ "Fostering critical and creative thinking", More Quick Hits, Indiana University Press, pp. 40–57, retrieved 2023-02-13
  7. ^ "Two Physics professors named 2017 American Physical Society Fellows | Institute for Materials Research". Retrieved 2023-02-13.

Chun Ning "Jeanie" Lau és una física estatunidenca i professora de Materials Quàntics a la Ohio State University. La seva investigació es centra en materials per a tecnologies quàntiques, incloent materials de van der Waals i superconductors. Va ser elegida Fellow de l'American Physical Society el 2017.

Vida i carrera[edit]

Lau va estudiar física a la University of Chicago. Va fer el seu doctorat a Harvard University i després va treballar com a associada de recerca a Hewlett Packard Labs.[citation needed]

Lau va començar a treballar com a professora a la University of California, Riverside el 2004.[1] Mentre treballava a Riverside, va descobrir accidentalment que empilant tres capes de grafè, depenent de com estaven empilades, la seva estructura es comportava com a conductor o com a aïllant.[2] Va fer servir l'espectroscòpia Raman per entendre les ordres precises d'empilament i va predir que les interaccions electròniques millorades entre les capes amb geometries específiques eren les responsables de la formació d'un forat de banda.[2]

Lau es va traslladar a la Ohio State University com a professora el 2017. Estudia com la confinació quàntica afecta les propietats electròniques i treballa en superconductors topològics i en la fabricació de materials bidimensionals amb patrons de Moiré.[3]

Premis i honors[edit]

2008 Presidential Early Career Award for Scientists and Engineers[4][5] 200

Referències[edit]

  1. ^ "Chun Ning (Jeanie) Lau". University of California Research. Retrieved 2023-02-13.
  2. ^ a b "How graphene's electrical properties can be tuned". ScienceDaily. Retrieved 2023-02-13.
  3. ^ Interview With Dr. Jeanie Lau, retrieved 2023-02-13
  4. ^ "UC Riverside physicist receives Presidential Early Career Award". 2009-07-08. doi:10.1063/PT.4.1295. {{cite journal}}: Cite journal requires |journal= (help)
  5. ^ "UC Riverside graphene specialist Jeanie Lau receives national honor at White House". EurekAlert!. Retrieved 2023-02-13.

Chun Ning "Jeanie" Lau és un físic nord-americà que és professor de materials quàntics a la Ohio State University. La seva investigació considera materials per a tecnologies quàntiques, incloent-hi materials i superconductors Van der Waals. Va ser escollida membre de la American Physical Society el 2017.

Primera vida i educació[edit]

Lau va estudiar física a la Universitat de Chicago. Es va traslladar a la Harvard University per a la recerca de postgrau. Després de completar el seu doctorat, Lau es va incorporar a Hewlett Packard Labs, on va treballar com a investigadora associada.[citation needed]

Recerca i carrera[edit]

Lau es va incorporar a la Universitat de Califòrnia, Riverside com a professor el 2004.[1] Mentre estava a Riverside, es va adonar accidentalment que en apilar tres capes de grafè, depenent de com s'apilaven capes, l'estructura es comportaria com a conductor o com a aïllant.[2] Va fer ús de l'espectroscòpia Raman per entendre l'apilament precís ordres, i va predir que les interaccions electròniques millorades entre capes amb geometries específiques eren les responsables de la formació d'un interval de banda.[2]

Lai es va traslladar a la Ohio State University com a professor el 2017. S'estudia com el confinament quàntic afecta les propietats electròniques i funciona en superconductors topològics i la fabricació de materials 2D amb [[patró Moiré] ]s.[3]

Premis i honors[edit]

Publicacions seleccionades[edit]

Referències[edit]

  1. ^ /06/jeanie-lau.html "Chun Ning (Jeanie) Lau". University of California Research. Retrieved 2023-02-13. {{cite web}}: Check |url= value (help)
  2. ^ a b com/releases/2011/09/110926144614.htm "Com es poden ajustar les propietats elèctriques del grafè". ScienceDaily (in Catalan). Retrieved 2023-02-13. {{cite web}}: Check |url= value (help)
  3. ^ Entrevista amb la Dra. Jeanie Lau (in Catalan). Retrieved 2023-02-13.
  4. ^ .org/do/10.1063/PT.4.1295/abs/ "El físic de la UC Riverside rep el premi presidencial a la carrera inicial". 2009-07-08. doi:10.1063/PT.4.1295. {{cite journal}}: Check |url= value (help); Cite journal requires |journal= (help)
  5. ^ a b "UC Riverside graphene l'especialista Jeanie Lau rep l'honor nacional a la Casa Blanca". EurekAlert!. Retrieved 2023-02-13.
  6. ^ Indiana University Press (ed.), "Fomentar el pensament crític i creatiu", More Quick Visites, retrieved 2023-02-13 {{citation}}: Unknown parameter |pàgines= ignored (help)
  7. ^ osu.edu/two-physics-professors-named-2017-american-physical-society-fellows/ "Dos professors de física nomenats 2017 American Physical Society Fellows | Institute for Materials Research". Retrieved 2023-02-13. {{cite web}}: Check |url= value (help)

Thermal
Yugadanavi Power Station (Q16060180)
The power station as seen from the Colombo Harbour, located 8km away.
Map
Country
Location
StatusOperational
Construction began
  • November 2007
Commission date
  • February 2010
Construction cost
  • $300 million (2009)
Owner(s)
  • LTL Holdings
Operator(s)
  • West Coast Power
Thermal power station
Primary fuel
Secondary fuel
Tertiary fuel
Turbine technology
Cooling source
Combined cycle?Yes
Power generation
Units operational3 × 100 MW
Make and modelGE Power 9E.03 (2)
Unknown (1)
Nameplate capacity
  • 300 MW
Annual net output
  • 1,800 GWh (2013)
Hydroelectrical
Three Gorges Dam (Q12514)
Přehrada Tři soutěsky, 2009
Map
Official name
  • 三峽大壩
Country
  • China
Location
StatusOperational
Commission date
  • 2003
Owner(s)
Operator(s)
Tidal power station
Tidal range
  • 80.6 m (264 ft)
Site elevation
  • 185 m (607 ft)
  • 4 m (13 ft)
Power generation
Units operational32 × 700 MW
Make and modelFrancis turbine (32)
Nameplate capacity
  • 22,500 MW
Capacity factor
  • 45 %
Annual net output
  • 100,000 GWh (2018)
  • 103.65 TW h (2021)
  • 87,000 GWh (2015)
  • 93,500 GWh (2016)
  • 97,600 GWh (2017)
External links
CommonsRelated media on Commons
Solar
DeSoto Next Generation Solar Energy Center (Q5244111)
Map
Country
  • United States
StatusOperational
Commission date
  • 27 October 2009
Construction cost
  • $150 million
Owner(s)
Solar farm
Type
Site area
  • 95 ha (230 acres)
Power generation
Make and modelsolar cell panel (90000)
Nameplate capacity
  • 25 MW
Annual net output
  • 52 GWh (2012)
External links
Websitewww.fpl.com/environment/solar/desoto.shtml
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Nuclear
Bugey Nuclear Power Plant (Q1186009)
Centrale nucléaire du Bugey
Map
Country
  • France
StatusOperational
Commission date
  • 15 April 1972
Operator(s)
Employees
  • 1,703 (2017)
Nuclear power station
Reactors5
Reactor type
Power generation
Units operational2 × 880 MW
2 × 910 MW
Make and modelpressurized water reactor (4)
Units decommissioned1 × 540 MW
Nameplate capacity
  • 3,580 MW
Annual net output
  • 14.58 TW h (2016)
  • 23.9 TW h (2017)
  • 25.1 TW h (2015)
External links
Websitewww.edf.fr/groupe-edf/producteur-industriel/carte-des-implantations/centrale-nucleaire-du-bugey/presentation
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Wind
wind farm on Serra de Rubió (Q11940189)
Parc eòlic nevat 4-02-2015
Map
Country
  • Spain
StatusOperational
Commission date
  • April 2005
Construction cost
  • 55 million € (2005)
Owner(s)
Wind farm
Type
Site elevation
  • 820 m (2,690 ft)
Power generation
Units operational50 × 1.5 MW
Make and modelEcotècnia IT-77/1500 (50)
Nameplate capacity
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Annual net output
  • 105,000 MW h (2006)
External links
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Tidal
Sihwa Lake Tidal Power Station (Q562741)
Map
Official name
  • 시화호조력발전소
Country
StatusOperational
Commission date
  • 3 August 2011
Construction cost
  • $560 million (2011)
Owner(s)
Thermal power station
Primary fuel
Tidal power station
Type
Crosses
  • Sihwa lake
Channel volume
  • 7.5 m/s (25 ft/s)
Power generation
Units operational10 × 25.4 MW
Make and modelKaplan turbine (10)
Nameplate capacity
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Capacity factor
  • 95 %
External links
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