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Enterprise Security Magazine | Saturday, January 29, 2022
Data encryption is a word we hear more frequently in today’s world, and that’s not bound to switch anytime soon.
FREMONT, CA: As data turns more valuable to companies, cybercriminals are using new tactics to get a hold of that data, often so they can use it against companies and individuals. If cybercriminals have ever attacked your business, you already understand the importance of data encryption.
But, even if you haven’t, getting the fundamentals of data encryption has turned essential to staying safe in our increasingly digitally-reliant society. Fire away by clarifying what we mean when discussing data encryption.
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What Is Data Encryption?
Data encryption is the process of digital data being translated into a complex code through encryption algorithms. This code can merely be read, encrypted, or decrypted if you have the decryption key. Organizations use data encryption to guarantee the secure transmission of storage of private or confidential digital data.
The purpose of data encryption goes over secure storage and transmission of your data; it incorporates message authentication and integrity that verify the message’s origin and that it was not changed since being sent. Authentication and digital signatures give an additional layer of data security for sensitive data.
The Future of Encryption
Today, we have a clearer knowledge of what data encryption means for you; let’s get into some of the development in cryptography we’re most thrilled about in the future.
1. QUANTUM CRYPTOGRAPHY
Quantum cryptography employs photons of light and the precepts of quantum physics to physically move data between a sender and recipient. Since information is transmitted using light, it cannot be intercepted, copied, or cloned.
With the support of quantum mechanics, it can be sent so that only the intended recipient can read it without altering the data. No further level of encryption would be necessary because the data would be worthless if it were intercepted by anyone other than the recipient.
2. HONEY ENCRYPTION
Honey encryption is miscalling because it doesn’t rely on traditional encryption approaches. Instead, it deters cybercriminals by making them think they’ve achieved access to your network or data when, in reality, they have only received false or irrelevant data.
3. FACIAL RECOGNITION ENCRYPTION
We’re already starting to witness the foundations being laid for facial encryption. As facial recognition technology advances, we expect facial encryption to become a fundamental way of securing data and protecting access to confidential information.
4. HOMOMORPHIC ENCRYPTION
Conventional encryption approaches create a point of vulnerability when you encrypt a message and decrypt it, even with a private key. Unfortunately, we have to decode data to access and use it. Homomorphic encryption attempt to tackle this issue by allowing you to use and access encrypted data without ever having to decrypt it in the first place.
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