Interested in controlling multiple spatial modes of light? Check out our new tutorial on how to turn your SLM into a 10-plane light converter!
arxiv.org/abs/2409.20039
Check out our new @NaturePhotonics paper on the generation of cluster states at record-high rates using high-dimensional entanglement:
nature.com/articles/s41566-0…
We use spatial entanglement to reduce the number of photons and feed-forward steps in photonic quantum computation (a 🧵)
Check out our work on shaping entangled photons using classical feedback!
opg.optica.org/opticaq/fullt…@RonenShekel and @OhadLib show how we utilize Klyshko’s advanced wave picture, to compensate for scattering of entangled photons through an arbitrary medium (a thread🧵)
New arXiv by @RonenShekel and @OhadLib!
Interested in how to compensate scattering of entangled photons through an arbitrary scattering medium? Read more here:
arxiv.org/abs/2403.18324
Check out my new arXiv paper: arxiv.org/abs/2403.18324
We shape entangled photons through general thick complex media, using a novel classical feedback mechanism, inspired by Klyshko’s advanced wave picture. It works even when each photon propagates through a different medium!
For everyone who likes to celebrate Christmas by reading about transversal gates on quantum codes, I have the perfect present for you! 🎁
Learn the basics of how to compute with quantum error-correcting codes in my new blog post on the topic!
arthurpesah.me/blog/2023-12-…
Interested in photonic measurement-based quantum computation?
Check out our new @arxiv:
arxiv.org/abs/2309.10464scirate.com/arxiv/2309.10464
We use high-dimensional spatial entanglement and multi-plane light conversion to encode and certify large cluster states at high rates
Check out our new "quantum piano" work on the @arXiv! arxiv.org/abs/2306.02288 😀When entangled photons propagate through a multimode fiber, their correlations are scrambled. We show a cool way to recover these correlations–by bending the fiber mechanically!🎹 a thread🧵
Check out our work on coherent backscattering of entangled photons @NaturePhysics😃nature.com/articles/s41567-0…
When entangled photons scatter, their correlations are scrambled. However, we show that when they backscatter together, they exhibit enhanced correlations! a thread🧵
Check out our new work on the interaction between solitons in mode-locked fiber lasers: doi.org/10.1364/OPTICA.47153…@OpticaPubsGroup#OPG_Optica
We show it is possible to control inter-soliton interactions in a mode-locked fiber laser, using a single control knob, the laser gain.1/9
After over a year in the works, our Perspective on the physics of #quantum light in complex media and its relevance to quantum technologies is published in @NaturePhysics!😀
Check it out: doi.org/10.1038/s41567-022-0…
Thank you @MeinzerNina for putting together this great issue!
Hi Twitter!
We are the Complex Photonics Lab @HebrewU, led by Yaron Bromberg. We will soon start sharing our research on #quantum and classical light in complex media! Stay tuned for cool results and other fun stuff😎
Current status: the classical simulation of random quantum circuits experiments (historically a.k.a. 'quantum supremacy') is doable after all. science.org/content/article/…
Congratulations to the 62 students who completed the month-long Quantum Error Correction Summer School! We thank you for your hard work and dedication. We also want to send a special thank you to the 35 speakers and mentors who helped make this event a success. #QiskitQEC