Physics for Electrical Engineering: Unit V: Nano Devices

Quantum structures

Definition, Principle, Explanation, 3 Types, Uses | Nano Devices

Definition : When a bulk material is reduced in its size, atleast one of its dimension, in the order of few nanometres, then the structure is known as quantum structure.

QUANTUM STRUCTURES

Definition

When a bulk material is reduced in its size, atleast one of its dimension, in the order of few nanometres, then the structure is known as quantum structure.

 

Explanation

The volume of a box can be reduced by shortening its length, width or, and height. The same is true for the region occupied by the electrons in a solid.

There are three dimensions to confine the bulk material. The quantum confinement needs confining at least one of these dimensions to less than 100 nanometers or even just a few nanometers.

The more the dimensions are confined, the more the density of states function looks like that of an atom. This progressive discretization gives new ways to understand real atoms, behavior of electrons and developing quantum confined electronic devices. Bosqong Isaishools sidanut ovad

A structure in which the motion of the electrons or holes are confined in one or more directions by potential barriers is called quantum confined structure.

The quantum confined structure is classified into three types based on the confinement directions. They are

(i) quantum well

(ii) quantum wire

(iii) quantum dot

 

(i) Quantum well (2 - dimension)

Definition

When the electrons are confined inside a region of minimal width, ie., confinement in one dimension "quantum-well" is created.

In other words, if one dimension is reduced to the nanometre range while the other two dimensions remain large, then we get a structure known as quantum well.

Fig. 5.1 shows a quantum well or 2-D structure


Construction

Quantum wells are made from alternative layers of different semiconductors or by deposition of very thin metal films.

Explanation

The quantum well is a larger structure in which the carrier particles are free to move in two dimensions. The particles are confined in one dimension hence, they are considered to be quantum confinement.

Due to the confinement of carriers, the quantum wel! structure has important applications in making useful devices. :

Use

Quantum wells are now widely used to make semiconductor lasers and other important devices.

 

(ii) Quantum wire (1 dimension)

Definition

When the electrons are confined in two mutually perpendicular directions, then the structure is known as quantum wire.

In other words, if two dimensions are reduced and one remains large, the resulting structure is quantum wire.

Fig. 5.2 shows a quantum wire or 1-D structure


Explanation

The carriers trapped in such structures are considered to be in 1-D quantum confinement. In this case, a carrier is only free to move its trajectory along the wire.

Example

Examples of quantum wire structures are nanowires, nanorod and nanotube.

 

(iii) Quantum Dots (0 - dimension)

Definition

When all the three dimensions are minimized the resulting structure is known as quantum dot.

The dot can be particle located inside a larger structure or on its surface. It can also be a place where electrons have been trapped using electrical fields.

Fig. 5.3 shows a quantum dot or 0-D structure


Explanation

Jang In quantum dot, the carriers has only confined states i.e., there are no freely moving carriers. Though a quantum dot has many thousands of atoms, carriers it is considered more like a single atom due to its peculiar properties.

Use

Quantum dot can be used in a quantum computer and lasers etc.

Fig. 5.4 and Fig. 5.5 explains the processes of diminishing the size in the case of rectilinear geometry and curvilinear geometry, respectively.


Fig. 5.5 Progressive generation of curvilinear nanostructures

Fig. 5.6 shows a comparison of three quantum confined structures with bulk material.


As quantum wells and quantum wires each have at least one dimension in which the electrons are free to move and these structures exhibit "partial confinement". However, quantum dots exhibit "total confinement".

The classification of quantum confined structures is shown in Table 5.1.

Table 5.1


 

Physics for Electrical Engineering: Unit V: Nano Devices : Tag: : Definition, Principle, Explanation, 3 Types, Uses | Nano Devices - Quantum structures