![]() |
Spintronics, which stands for “spin transport electronics” is a branch of electronics that exploits the intrinsic spin of the electrons and their fundamental electronic charge for the various functionalities in solid-state devices. Unlike traditional electronics which rely solely on the charge of the electrons, spintronics utilizes both charge and spin properties for data storage, processing, and communication. Electron spins in Spintronics are used to represent binary data which enables efficient and faster data storage and data processing. It is also useful in creating devices that are energy efficient. One such example is a spin-based transistor which can reduce the consumption of power, leading to greener technology. In this article, we will study about Spintronics in detail. Table of ContentWhat is Spintronics?As the name suggests, Spintronic is nothing but Spin Electronics where we study the intrinsic study of electrons along with its magnetic moment for electronic materials and equipment so that we can achieve high performance and increased integration density compared to the traditional electronics. And we can achieve lower power consumption. as well. Examples of SpintronicsThere are several examples of spintronics devices like :
History of Spintronics
Reasons of EvolutionThe Spintronics evolved due to growing demand for more efficient and compact electronic devices and traditional electronics faced limitations concerning power consumption and heat generation. The Spintronics emerged as a way to overcome these limitations and enable new functionalities. Effects of SpintronicsThe primary effect of spintronics is manipulation of the electron spin to create novel electronic behavior. This includes the generation of spin currents in which can be used for the data transmission and the utilization of spin-dependent phenomena like giant magnetoresistance for the sensitive magnetic field sensing. Working of SpintronicsIn spintronics, the spin of electrons is used to carry and manipulate information. the Spin currents are generated by the injecting electrons with the specific spin orientations into a device. These spin-polarized currents can then influence the magnetization of magnetic layers leading to various effects like resistance changes in the GMR devices or switching in STT devices. ![]() Spintronics SpinSpin is an intrinsic property of subatomic particles (electrons, protons, and neutrons). Spin of subatomic particles are associated with angular momentum. It is a fundamental property of particles in the quantum world, which is not related to actual physical spinning like a planet or a top. ChargeCharge is a fundamental physical property of matter. It is the property of an object which determines that how a subatomic particle interacts with the electromagnetic fields. Charges are of two types i.e., positive charge (+) and negative charge (-). Spintronic Memory and Spin GenerationIn this section we will study about Spintronics Memory and Spin Generation. Spintronic memoryThe Spintronic memory known as “spin memory” or “spin-transfer torque memory” is a type of the non-volatile memory that utilizes the spin of the electrons to store and retrieve data. Unlike traditional DRAM or NAND Flash memory, spintronic memory retains data even when power is turned off making it highly attractive for the various applications including the computing and storage. Spin GenerationThe Spin generation involves creating a spin-polarized current by the various means such as:
Types of SpintronicsThere are four types of Spintronics:
1. Giant Magnetoresistance (GMR)The Giant Magnetoresistance is a quantum mechanical effect that was discovered independently by the Albert Fert and Peter Grünberg in late 1980s. In the given image, you would visualize layers of the magnetic materials separated by a non-magnetic spacer. The relative orientation of magnetization in the magnetic layers affects the electrical resistance. When the magnetization is parallel , resistance is lower and when it’s antiparallel resistance is higher. This groundbreaking discovery opened up new possibilities in field of the spintronics and revolutionized data storage technology. ![]() Giant Magnetoresistance 2. Spin Transfer Torque (STT)The given diagram shows a layered structure with a fixed magnetic layer and a free magnetic layer and separated by an insulating layer. A current carrying spin-polarized electrons is shown being injected into free layer and Depending on the relative orientation of the spins in two layers, the spin transfer torque can lead to switching the orientation of free layer. ![]() Spin Transfer Torque (STT) 3. Metal-Based Spintronics Th Metal-based spintronics primarily involve the manipulation of the electron spin in metallic materials. This approach is often referred to as “giant magnetoresistance” or “spin-valve” technology.
4. Semiconductor-Based SpintronicsThe Semiconductor-based spintronics focuses on using the semiconducting materials such as silicon or organic semiconductors to manipulate electron spin. This field offers the potential for the combining traditional electronic logic with the spin-based functionalities.
Properties and Characteristics of SpintronicsThere are some properties of Spintronics given below : Properties
Characteristics of SpintronicsThere are some characterstics of Spintronics given below :
Applications of Spintronics
Example on SpintronicsDemonstrate the spin property of the electrons in spintronics, it is the example of Spintronics. Demonstrate the spin property of the electrons in spintronicsIn this diagram, you would typically see two arrows representing electrons. One arrow pointing upwards indicates electrons with the “spin-up” orientation and while another arrow pointing downwards represents electrons with the “spin-down” orientation. This demonstrates the spin property of the electrons. ![]() Spin Up and Spin Down Advantages and Disadvantages of SpintronicsAdvantages of Spintronics
Disadvantages of Spintronics
ConclusionThe Spintronics has revolutionized electronics by the incorporating electron spin as a new degree of freedom. It has enabled faster and more energy-efficient devices with the applications ranging from the data storage to magnetic sensing. FAQs on Spintronics1. Why is spintronics considered energy-efficient?
2. Can spintronics replace traditional electronics entirely?
3. How does spintronics relate to quantum computing?
|
Reffered: https://www.geeksforgeeks.org
Electrical Engineering |
Related |
---|
![]() |
![]() |
![]() |
![]() |
![]() |
Type: | Geek |
Category: | Coding |
Sub Category: | Tutorial |
Uploaded by: | Admin |
Views: | 13 |