First, I apology for my over-excitement haha, this is only just striking me to be interesting. However, don't mistaken that with a popular science fan-boy; its the math I'm really interested in.
ZapperZ said:
Let's not get hung up on semantics, here. Physicists often give labels to things without having to think what it would sound like to the rest of the population. What is more important is understanding what the physics mean, rather than visualizing what the name conjures up.
Zz.
Actually at first I was uninterested in the standard model and particle physics because they kept conjuring everything up as particles. When I think of particles I usually envision the old view of matter. And I don't know why but I find particle physics much more exciting when I think of it from the point of view of quantum mechanics; including the wave-particle duality interpretation.
ZapperZ said:
This is not just a "high energy/particle physics" issue. It is a more general formalism of quantum field theory. QFT is applicable in a huge variety of field, including condensed matter physics that is the domain of the stuff you use everyday in your electronics. Phonons, spinons, magnons, polarons, etc. are equivalent "force particles" that transfer interactions.
Zz.
This stuff sounds very interesting actually. I've always liked quantum field theory, quantum mechanics, etc. and general relativity but had a distaste for particle physics out of ignorance. Now I'm seeing the grander picture of physics and its beautiful!
I find it very interesting that there all these different "particles" going on. Please clarify this for me...
All these "particles" are different manifestations of wave functions(for lack of better words, I don't think that is the correct terminology). Different wave functions are classified and given names such as the pion, muon, etc. Force carriers such as w and z bosons are some type of ... okay I'm completely lost on what makes them different from other particles and what makes them force carriers.
mathman said:
Quantum mechanics applies. There are four fundamental forces, each of which has a force particle.
electromagnetism - photon
strong nuclear - gluon
weak nuclear - W and Z
gravity - graviton (hypothetical - it has not been discovered)
Gluons are very intriguing.. As I was researching on Brookhaven National Laboratory for an internship I stumbled upon a short video. It stated that the "gluon" force, for lack of better words, is the only known force that actually increases with distance!
Oh boy, I really can't dive into the mathematics of this now. Before quantum mechanics was interesting to me but now I see a whole different beast.