Jihua Zhang (@zhang_jihua) 's Twitter Profile
Jihua Zhang

@zhang_jihua

ID: 1370605038247186433

calendar_today13-03-2021 05:18:10

27 Tweet

19 Followers

62 Following

MetaOptics (@tmos_arc) 's Twitter Profile Photo

Congrats to Alexander Solntsev, one of our Associate Investigators, for this article published in Nature Photonics. This is a great review of our field. We're excited about the potential metasurfaces have. Metasurfaces for quantum photonics buff.ly/2PVaaGg

Congrats to Alexander Solntsev, one of our Associate Investigators, for this article published in Nature Photonics. This is a great review of our field. We're excited about the potential metasurfaces have. 

Metasurfaces for quantum photonics
buff.ly/2PVaaGg
PhysicsANU (@physicsanu) 's Twitter Profile Photo

Tiny but spooky: unveiling new quantum light source that emits entangled photons from structure 1/100th width of hair. Room temperature, tunable & microscopic! Great work from EME & MetaOptics Dragomir Neshev Mary Gray Science & Medicine at ANU ANU Media physics.anu.edu.au/news_events/?N…

Tiny but spooky: unveiling new quantum light source that emits entangled photons from structure 1/100th width of hair. Room temperature, tunable & microscopic! 
Great work from EME  &amp; <a href="/TMOS_ARC/">MetaOptics</a>  <a href="/DNeshev/">Dragomir Neshev</a> <a href="/This_Mary_Gray/">Mary Gray</a> <a href="/scienceANU/">Science & Medicine at ANU</a> <a href="/ANUmedia/">ANU Media</a> physics.anu.edu.au/news_events/?N…
MetaOptics (@tmos_arc) 's Twitter Profile Photo

A key element for future quantum techn is closer with the unveiling of a tiny quantum light source, less than 1/100 the diameter of a hair thick. The device’s practical qualities will make it a valuable component for future micro-quantum technology. READ: buff.ly/3Q9ROdU

A key element for future quantum techn is closer with the unveiling of a tiny quantum light source, less than 1/100 the diameter of a hair thick. The device’s practical qualities will make it a valuable component for future micro-quantum technology.
READ: buff.ly/3Q9ROdU
MetaOptics (@tmos_arc) 's Twitter Profile Photo

Breakthrough in quantum tech published in Science Advances: Spatially entangled photon pairs from lithium niobate nonlocal metasurfaces READ: buff.ly/3oF8rme

Breakthrough in quantum tech published in Science Advances: Spatially entangled photon pairs from lithium niobate nonlocal metasurfaces 

READ: buff.ly/3oF8rme
MetaOptics (@tmos_arc) 's Twitter Profile Photo

ā€œThe device can combine two photons into one. This is useful in generating new colours of light, which would be useful for night vision cameras.ā€ Science Advances: Spatially entangled photon pairs from lithium niobate nonlocal metasurfaces READ: buff.ly/3cUYgah

ā€œThe device can combine two photons into one. This is useful in generating new colours of light, which would be useful for night vision cameras.ā€ 

Science Advances: Spatially entangled photon pairs from lithium niobate nonlocal metasurfaces 
READ: buff.ly/3cUYgah
MetaOptics (@tmos_arc) 's Twitter Profile Photo

We are looking for two post-docs to join us at our ANU node! Closing: 27 Nov. TMOS is developing next gen miniaturised optical systems. Together, we overcome complex challenges in light generation, manipulation, and detection at the nanoscale. APPLY: jobs.anu.edu.au/cw/en/job/5455…

We are looking for two post-docs to join us at our ANU node! Closing: 27 Nov.

TMOS is developing next gen miniaturised optical systems. Together, we overcome complex challenges in light generation, manipulation, and detection at the nanoscale. 

APPLY: jobs.anu.edu.au/cw/en/job/5455…
Jihua Zhang (@zhang_jihua) 's Twitter Profile Photo

I am so humbled and honored to receive the ECR award of TMOS 2022. Many thanks to MetaOptics for organizing such a wonderful Meta-together conference, my best role-model supervisors Andrey Sukhorukov and Dragomir Neshev for their support and encouragement, and all the lovely TMOS members.

Nature Photonics (@naturephotonics) 's Twitter Profile Photo

Don't miss the forward looking REVIEW on 'smart vision with metasurfaces' written by Dragomir Neshev and Andrey Miroshnichenko in the Jan 2023 Focus issue on metasurfaces. go.nature.com/3kPvqw0

Don't miss the forward looking REVIEW on 'smart vision with metasurfaces' written by <a href="/DNeshev/">Dragomir Neshev</a> and Andrey Miroshnichenko in the Jan 2023 Focus issue on metasurfaces.

go.nature.com/3kPvqw0
Kai Wang (@kaiwang2011) 's Twitter Profile Photo

My research group at McGill is looking for a postdoc working on experimental quantum photonics. Open until filled! mcgill.wd3.myworkdayjobs.com/en-US/mcgill_c…

My research group at McGill is looking for a postdoc working on experimental quantum photonics. Open until filled!
mcgill.wd3.myworkdayjobs.com/en-US/mcgill_c…
MetaOptics (@tmos_arc) 's Twitter Profile Photo

Physicists working in the new field of meta-optics have made a breakthrough in the generation of polarization-entangled photon pairs that could allow quantum communication to be integrated into handheld devices. READ: tmos.org.au/news/a-new-bre… #quantum #polarization

Physicists working in the new field of meta-optics have made a breakthrough in the generation of polarization-entangled photon pairs that could allow quantum communication to be integrated into handheld devices.
READ: tmos.org.au/news/a-new-bre…

#quantum #polarization
MetaOptics (@tmos_arc) 's Twitter Profile Photo

Conventional methods for preparing two-photon polarization states restrict the versatility and tunability of the generated quantum states. We present a solution using a nonlinear metasurface incorporating multiplexed silica metagratings. READ: buff.ly/45vssPX

Conventional methods for preparing two-photon polarization states restrict the versatility and tunability of the generated quantum states. We present a solution using a nonlinear metasurface incorporating multiplexed silica metagratings.

READ: buff.ly/45vssPX
MetaOptics (@tmos_arc) 's Twitter Profile Photo

Often, quantum applications require identical photons. Photon sources are taken offline to be tested and adjusted by comparing photons multiple times using different configurations, a process that is time consuming and requires relatively bulky equipment. Our team has designed a

Often, quantum applications require identical photons. Photon sources are taken offline to be tested and adjusted by comparing photons multiple times using different configurations, a process that is time consuming and requires relatively bulky equipment.

Our team has designed a