Can Optical Angular Momentum Revolutionize Open-Space Light Communication?

In summary, optical angular momentum (OAM) is a new concept that could overcome difficulties with twisted light across open spaces.
  • #1
microsansfil
325
43
HI

In a new report published the Thursday 26 October in the journal Science Advances, a team of physicists based in the UK, Germany, New Zealand and Canada describe how new research into "optical angular momentum" (OAM) could overcome current difficulties with using twisted light across open spaces.
...
https://www.gla.ac.uk/news/headline_555908_en.html

What is "Optical angular momentun" ? Is it the same concept as "orbital angular momentun" ? ‘orbital’ angular momentum is not unique to light and occurs (same concept) for other fields , including electrons, neutrons, and atoms (no massless) ?

Best regards
Patrick
 
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  • #2
Light is an electromagnetic wave, which is described as a massless spin-1 field, the electromagnetic field. Electromagnetism a la Maxwell is the paradigmatic example of a (classical) relativistic field theory, and you cannot in a unique and gauge-invariant way split the total angular momentum of the electromagnetic field into spin and orbital parts. Only total angular momentum makes sense. The physical notion that comes next to spin in non-relativistic quantum theory for (necessarily massive!) particles is helicity, i.e., the projection of the total angular momentum to the direction of momentum. In the quantum electrodynamics a single photon can have helicity +1 or -1. For the classical em. wave this corresponds to the circularly left and right-polarized plane-wave modes.

You can expand the single-photon states and also the classical em. field also in terms of angular-momentum eigenstates, i.e., in vector spherical harmonics (most elegantly formulated in terms of Debye potentials). "Twisted light" are electromagnetic waves with higher angular-momentum. In the scientific paper

http://dx.doi.org/10.1126/sciadv.1700552

they describe it in terms of Laguerre-Gauss modes with higher ##\ell##.
 
  • #3
In this slides page 3 the author write

upload_2018-3-3_16-39-45.png


If the total angular momentum of a photon cannot be split into spin and orbital angular momentum (OAM) parts in a gauge invariant way, thus this expression, isn't gauge invariant ? Or S and L are not genuine AM (Angular Momentum) operators ?

best regards
Patrick
Optical orbital angular momentum !
 

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  • #4

1. What is optical angular momentum?

Optical angular momentum is a type of angular momentum associated with the rotation of light waves. It refers to the amount of rotational energy and momentum carried by an electromagnetic wave as it travels through space.

2. How is optical angular momentum measured?

Optical angular momentum can be measured using a variety of techniques, including interferometry, diffraction patterns, and polarization measurements. These methods allow for the determination of the angular momentum of a light beam in both the transverse and longitudinal directions.

3. What are the applications of optical angular momentum?

Optical angular momentum has many practical applications, including optical tweezers, optical communication, and optical computing. It is also being studied for potential applications in quantum information processing and high-speed data transmission.

4. Can optical angular momentum be manipulated?

Yes, optical angular momentum can be manipulated using various techniques such as using spatial light modulators, holograms, and specialized optical elements. These methods allow for the control and manipulation of the orbital angular momentum of light, which has potential applications in optical data storage and communication.

5. How does optical angular momentum relate to the spin of light?

Optical angular momentum and spin are two different types of angular momentum associated with light. Spin angular momentum refers to the intrinsic angular momentum of photons, while optical angular momentum refers to the orbital angular momentum of light waves. These two types of angular momentum are related through the polarization of light, which is a manifestation of spin angular momentum.

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