Friday, June 30, 2023

Quantum Acoustic Phonon Sound Laser as Virtual Phonons creating light?

 A sound laser is characterized by the stimulated coherent emission of acoustic phonons and is also commonly referred to as a “phonon laser”.4,100,117,118 The phonon lasing action has been theoretically advised and experimentally reported in several optomechanical systems at different acoustic frequencies ranging from MHz to hundreds of GHz.4,100,118–122 At ultrahigh frequencies, the experimental observation of phonon amplification has been reported in hybrid systems coupling Bose-Einstein condensates with acoustic phonons4 and in semiconductor superlattices exploiting electron–phonon interactions.100

https://pubs.aip.org/aip/apl/article/122/14/140501/2882348 

  A significant case is the creation of quantum light sources in which coupling between single photons and phonons can be controlled and harnessed to enable quantum information transduction.
Tarrago Velez, Santiago, Vivishek Sudhir, Nicolas Sangouard, and Christophe Galland. “Bell correlations between light and vibration at ambient conditions.” Science Advances 6, no. 51 (2020): eabb0260.

 spontaneously created between light and vibration during the Raman interaction. Here, we present a scheme leveraging universal properties of spontaneous Raman scattering to demonstrate Bell correlations between light and a collective molecular vibration. We measure the decay of these hybrid photon-phonon Bell correlations with sub-picosecond time resolution and find that they survive over several hundred oscillations at ambient conditions.

Creating and detecting quantum entanglement between light and atomic vibrations at room temperature - video

 ultrasound laser frequency so the air is a nonlinear medium - vid

Quicycle papers

 https://quicycle.com/quicyclejournal/#QJ0017

 Paul S. Wesson pdf

 Photon creation can still occur through transitions from positive to negative frequencies. In the quantum case this implies that a synthetically moving structure would spontaneously emit radiation even when impedance matched. The significance of impedance matching relates to black hole radiation where in the vicinity of the Schwarzschild singularity the effective values of permittivity and permeability are impedance matched and therefore according to our theorems radiation can only occur if negative frequencies are included.

Photon conservation in trans-luminal metamaterials 

negative frequencies must be interpreted as
positive energies. This we address by inverting the sign of both the frequency and the wave
vector thus retaining the reality of a wave headed in the same direction as before the inversion

Wednesday, June 28, 2023

Weak Measurement of One entangled photon (with two paths) is mathematically equivalent to 1/2 spin

 https://www.youtube.com/watch?v=0-mzcSDhnug

 Yet according to relativity....

In other words, the speed of light is not a valid frame of reference. Therefore statements such as photons don't experience time or photons are emitted and absorbed at the same time, are physically meaningless. They explain nothing. Photons clearly have a world line which they travel along at the speed of light. In general relativity these are called null-geodesics. The abovementioned statements refer to the null prefix, but the null-geodesic is a path along which the photon moves. Closer to home, we can build optical circuits for photons and they will interact with the optical elements in a well-defined causal order. In other words, they will reflect, split, and interact at specific points in space and time.

If we are to unpack the statement that photons don't experience time, then it is with respect to internal changes of state. This statement means that the state of a photon is fixed, and so only subject to extrinsic influences. This should hold for any massless particle, which must travel at the speed of light. The violation of this property was observed with neutrinos, which were thought to be massless. However, the observation that their internal state oscillates indicated that they must have a mass. In other words, neutrinos have a clock.

 

 Quantum particle, light clock or heavy beat box? Martin B van der Mark1 

 Starting with the concept of the light clock we have shown that a Lorentz boost to velocity ᡴ⃑ on a single-photon standing wave produces a spatial beat pattern with exactly the de Broglie wavelength of a quantum particle of mass ᡥ = ℏ″/ᡕ ⡰.

Since light does have gravitational mass then there is an internal awareness to light that is the superluminal phase velocity from the de Broglie-Bohm quantum potential, based on noncommutative nonlocality that is instantaneous action at a distance as fundamental time or protoconsciousness as 1/2 spin.

 @voidisyinyangvoidisyinyang885  But you do need calculations to form consciousness. Sounds cold but, our words are crude. Now kneel, to your A.I. overlords. 😐
 @wtfamiactuallyright1823  actually protoconsciousness as Roger Penrose calls it is fundamental time and requires no external measurement. It is a noncommutative nonlocality that is instantaneous action at a distance as Professor Jean Bricmont points out.

We can listen, especially musicians, up to ten times faster than Fourier Uncertainty. Our microtubules resonate as superluminal superradiance as Anirban Bandyopadhyay recently demonstrated. So just by meditating we then logically infer consicousness without any calculation. Edgar Allan Poe figured this out also - that's why the key to mystery novels is a retrocausality.

 The Nobel Prize was just issued for Bell's Inequality. My own quantum physics professor collaborated with the Nobel Prize recipient on those same Bell Inequality experiments. Just watch quantum physics professor Jean Bricmont's lecture on youtube from two weeks ago: OH23, Jean Bricmont: Einstein, Bohm, and Bell, A Comedy of Errors

 Light is Heavy by Nobel Physicist Gerard 't Hooft and Martin van der Mark

 "The superluminal photon hypothesis could also help explain the nature of dark energy. Recently, Goray has proposed an alternative approach for dark energy based on the photon’s illusive mass, which opens up new geometrical perspectives of spacetime [53]. Specifically, photons show a nonzero rest mass interacting with matter that contributes to the universe’s curvature. Exploiting this idea, superluminal photons also carry an imaginary mass interacting with strong gravitational fields, further contributing to the spacetime curvature. This suggests a potential link between superluminal photons and dark energy, though such an idea is still far from theory."

Electromagnetic Field Theory in Superluminal SpacetimeLuca Nanni, 2023

 But, photon also possesses an imaginary rest mass inside the transparent medium which has been experimentally confirmed. 39 However, for every particle like electron, proton, etc. they have ¯xed rest
mass, but in the case of photon it is not true. A very recent theoretical approach
suggests that \illusive mass" behavior is the reason for its characteristic. By math-
ematical expression, the illusive mass of photon is a complex number. It depends
upon the wavelength (p) of photon and scalar curvature of the surface of interacting
matter. 45,46
According to wave-particle duality, light itself is a wave and particle and typically
the particle form is considered as a photon. In free space, the photon's relativistic
mass is expressed 

M Goray and R N Annavarapu, Rep. Adv. Phys. Sci. 4 2050009 (2020)

So, from our theoretical
calculations, we have shown the energy of a photon in terms of a complex number.
This form, in reality, hides the photon's energy. This hidden energy of photon might
imply the other form of DE of the cosmos and take part in the DE budget of the
universe...The photon shows this form of DE when it touches the surface of
matter, and hence it hides its energy due to the illusive mass which in turn accel-
erates the universe. Hidden energy equation of photon is a complex number and in
the absence of object, this energy equation gives the known form of energy of photon.