Tuesday 18 November 2014

Quantum Gravity and Gravity of a Rigid Body

How we can apply Gravity into Quantum Mechanics


To bring classical physics and Quantum theory in a same line we have to bring them under a same platform with certain measurements. We have to bring Classical Physics into microscopic level or Quantum Mechanics into macroscopic level or these two under a same platform. According to me microscopic or macroscopic dimensions are influencing the reference frame of the observer. Here I am trying to bring them under a same dimension in two different frames of an observer in a same platform. I think that it is possible if we bring Gravity as a main component in these two branches of physics. So I am trying to insert gravity in these two. Gravity is already described in Classical physics. So we can start from it.
                             Here I am going to start from Newton and his theory of Gravity. We know that
 
                                                                                                 (1)
All we know that every objects with mass (Energy) show its own gravity. Now imagine an object at space. We can calculate its gravity by the equation

                                                                                                  (2)
                             Now we can bring this object into Earth’s surface. At this time the gravity will be equation (1). But at the same time the objects gravity will be equation (2). Anyhow we can work with the concept that the object is at the space for more clarity and the equation (2) as its gravity. So equation (2) states        g = Gm/ r 2. By this we can bring out mass {m} and write as
                         
                                                               (3)
                          

    Now we can think about the total energy of the object at rest.
                 So, E = mc2                                                            (4)
                                  Here I am going to hide the mass from equation (4) and insert equation (3) instead of mass. So we can write it as
       
                                                                                                 (5)
                                   So here we bring gravity, universal gravitational constant and radius of the object in equation (3) instead of mass. While we are bringing gravitational constant “G”, the object is being a part of universal gravity. So it can be macroscopic or microscopic according to the distance between the object and the observer. The important thing is that the object is just become a part of the total gravity of the universe. Here the platform of the object is the total energy of the universe and its gravity.
                             Now we will go through Quantum Theory and try to insert gravity and universal constant of gravity in it. While I am reading some articles, I get noticed some points of De Broglie relation and the possibilities to insert the gravity in it. So we can work with De Broglie relation and it states,
 
                                                                                                (6)
                             By using Special Relativity, the equation (6) can be written as
 
                                                                                               (7)
Here m0 is the rest mass of the object.
Now we can bring equation (5) to equation (7) and it can be written as
 
                                                                                                (8)
And we can say simply as
 
                                                                                                 (9)
Here also we bring the universal gravitational constant into the equation and the particle into the platform of universal gravity.
By this we can bring the classical and quantum physics under a same platform.
                 According to me the fundamental of universe is the energy. It has its own properties and will not change even if it is macroscopic or microscopic object. And laws of motion is also unchangeable. 

Quantum Gravity and Gravity of a Rigid Body

According to me gravity is the property of energy. We already know how to calculate the gravity of an object with its mass (2). An object with mass m has the total energy in it is mc2. So I would like to bring out gravity in the equations of energy and my logics leads me to this equation.

                                                                                               (10)
Here A is a constant, E is energy and g is the gravity. We already know how to calculate gravity. So we can calculate the value of A easily by any object we knows its gravity. And the equation is

                                                                                              (11)
This equation leads us to…….

                                                                                            (12)
Now we will go through Quantum mechanics. The equation of the energy of a photon is.

                                                                                           (13)
 Here also we can bring the equation (10) because a massless photon also show its own gravity. This leads me to create this idea. Even a photon doesn’t show mass, it has its own energy. And that energy shows gravity. So we can write as……

                                                                                            (14)
Now we can bring energy of a photon as the measurement of energy. Even it doesn’t show the mass, the energy of a photon can add some mass if it is absorbed by a particle or a system. Imagine that photoelectric effect is occurring in a plate. Here we can imagine that 1000 electrons are absorbing 1000 photons at the same time. So an energy or a mass is going to add to the plate by the photons. So the total energy E of the plate at this time is……….
 
                                                                                            (15)
Here the added mass or energy of the system is………

                                                                                             (16)
Now we can calculate the additional gravity gained on the system by the photons.
                                                                                              (17)
While bringing equation (3) here, we can write it as….

                                                                                               (18)
And gravity of a closed system (even it is a rigid body) we can write as…..

                                                                                               (19)
Total energy of a particle or an object we can write as……..

                                                                                                 (20)

So we can calculate the gravity of any object by this way.

Sunday 2 November 2014

How we can apply Gravity in Quantum Mechanics

How we can apply Gravity into Quantum Mechanics
To bring classical physics and Quantum theory in a same line we have to bring them under a same platform with certain measurements. We have to bring Classical Physics into microscopic level or Quantum Mechanics into macroscopic level or these two under a same platform. According to me microscopic or macroscopic dimensions are influencing the reference frame of the observer. Here I am trying to bring them under a same dimension in two different frames of an observer in a same platform. I think that it is possible if we bring Gravity as a main component in these two branches of physics. So I am trying to insert gravity in these two. Gravity is already described in Classical physics. So we can start from it.
                             Here I am going to start from Newton and his theory of Gravity. We know that
                                                                                     (1)
All we know that every objects with mass (Energy) show its own gravity. Now imagine an object at space. We can calculate its gravity by the equation
                                                                                                (2)
                             



Now we can bring this object into Earth’s surface. At this time the gravity will be equation (1). But at the same time the objects gravity will be equation (1). Anyhow we can work with the concept that the object is at the space for more clarity and the equation (2) as its gravity. So equation (2) states        g = Gm/ r 2. By this we can bring out mass {m} and write as
                                                                                              (3)
                             



 Now we can think about the total energy of the object at rest.
   So, E = mc2                                                      (4)
                                 
 Here I am going to hide the mass from equation (4) and insert equation (3) instead of mass. So we can write it as
                                                     (5)
                                   



So here we bring gravity, universal gravitational constant and radius of the object in equation (3) instead of mass. While we are bringing gravitational constant “G”, the object is being a part of universal gravity. So it can be macroscopic or microscopic according to the distance between the object and the observer. The important thing is that the object is just become a part of the total gravity of the universe. Here the platform of the object is the total energy of the universe and its gravity.
                             Now we will go through Quantum Theory and try to insert gravity and universal constant of gravity in it. While I am reading some articles, I get noticed some points of De Broglie relation and the possibilities to insert the gravity in it. So we can work with De Broglie relation and it states,

                                                                            (6)
                             



by using Special Relativity, the equation (6) can be written as

                                 (7)





Here m0 is the rest mass of the object.
Now we can bring equation (5) to equation (7) and it can be written as
                                                
                                            (8)






And we can say simply as
                                                                           (9)





Here also we bring the universal gravitational constant into the equation and the particle into the platform of universal gravity.
By this we can bring the classical and quantum physics under a same platform.
                 According to me the fundamental of universe is the energy. It has its own properties and will not change even if it is macroscopic or microscopic object. And laws of motion is also unchangeable. 

Aloysius Sebastian
aloysi.aloys@gmail.com


Sunday 6 July 2014

time travel

Time Travel


Here I am trying to describe my thoughts about the time and curvature of space and time.  Now we can imagine a sphere which undergoes an explosion from its center and the parts of the sphere is scattering into all the dimensions of the sphere, and continue its motion [1].

This figure shows us three stages of the sphere ie; the sphere before explosion, few seconds after the explosion and sometimes after the explosion. Now here I am going to concentrate some parts from the expanding sphere to describe the curvature of space - time and force of gravity.

I am taking 5 parts from the expanding sphere (objects A, B, C, D and E). We can imagine it as the expanding universe too. We know that all these parts are moving away with a uniform velocity. Now imagine that an object is travelling from “B” to “E”. While it is reaching to the point “E”, the object “E” is also travelling, so the object “E” will be at the point “F”. Here we can observe the curvature of time and space directly. This figure shows us the difference in distance between the relatively moving objects. Once the object starts travelling from “B” to “E”, it is travelling in a straight line. But here the destination of the travel “E” is moving towards to “F”. So the object which is travelling to “E” has to follow the motion of “E”. If it follows the motion of “E” the path of travel must have to curve. It is not happening here. We can see that the object which travels from “B” to “E” is always travelling in a straight line. So here space and time is getting curved according to the travel and gravity is directly helping the object to getting a curved space and time. If gravity is not holding the traveling object in it has to follow the motion of “E” and the travelling path must have to curve. So here we can see here the influence of gravity. So we can clearly say here that gravity is keeping the moving object in a straight line. That I am explaining below.